Friday, 28 August 2026

See farther. Protect more - A world first!

Datalogic’s Sensor & Safety and Machine Vision business unit, Datasensing, has launched the SLS10 Safety Laser Scanner. Offering the largest safety coverage currently available on the market, the new SLS10 also delivers ultra-fast response times, and best-in-class angular resolution to help manufacturers boost protection. All while reducing total cost of ownership (TCO).

As the world’s first 10 m safety laser scanner, the SLS10 enables customers to see farther and protect more. With a maximum safety range of 10 m (32.8 ft) across a 275° scanning angle for 70 mm detection capability, the device provides up to 240 m² of safety coverage from a single scanner. This impressive capability supports the protection of larger workspaces, longer production lines, and bigger industrial machinery with fewer devices. Instead of deploying multiple scanners to achieve full coverage, users can rely on a single SLS10, lowering hardware investment and shortening commissioning times, as well as reducing maintenance requirements.

“Safety should never be a compromise between protection, productivity, and cost,” said Andrea Donadel, Industrial Automation Products and Solutions Executive Vice President at Datasensing. “With our new SLS10, we are advancing safety laser scanning for the benefit of both end users and system integrators. Its market-leading 10 m range, rapid response time, and advanced configuration tools not only mean protecting wider areas with fewer devices, but also better operational efficiency and flexibility”

Greater safety coverage costing less.
The new SLS10 provides multiple detection capabilities for different applications. Alongside its 10 m safety range for 70 mm detection capability, it also offers 5 m safety range for 30 mm, 5.5 m for 40 mm, 7.5 m for 50 mm, and 8.75 m for 60 mm. This flexibility makes the scanner ideal for palletizing systems, robotic cells, laser cutting machines, woodworking machinery, warehouse AGVs/AMRs, and much more. Customers gain peace of mind that every risk has been safely addressed while lowering total system costs.

Value beyond safety.
Beyond safeguarding, the SLS10 delivers powerful performance in navigation applications thanks to its best-in-class angular resolution of up to 0.059°. Angular resolution defines the minimum distance between consecutive laser measurement points. The outcome for users is higher accuracy in support of improved navigational capabilities, making the SLS10 particularly valuable for high-payload AGVs/AMRs and automated forklifts. This potential for further applications adds value beyond traditional safety tasks.

The SLS10 delivers an ultra-fast 84 ms response time, the best in its class for safety distances above 9 m, allowing installation closer to hazardous areas while maintaining compliance. The result is a smaller machine footprint, greater design flexibility, and improved productivity.

Smarter configuration and easier commissioning.
Datasensing has also introduced a redesigned DL Sentinel user interface through its new ONEGUI platform, improving setup and day-to-day management. Users can configure safety zones more easily, monitor Master and Remote devices simultaneously, and use the new OptimaTune technology to automatically select the best balance between safety distance, response time, and environmental conditions. Benefits include reduced commissioning time and improved stock flexibility by replacing previous scanners without any compromise in performance.

Selected models also include positional zone set switching by encoder, a patent-pending feature that enables automatic zone changes without additional sensors.

Complying with SIL-2 and PLd safety standards, SLS10 delivers the reliability required for mission-critical industrial environments. Notably, strong immunity to dust helps reduce false triggering, preventing unnecessary and costly machine shutdowns.


@DatalogicGroup @mepaxIntPR #Datasensing #PAuto #Laser

Field mounted low power PSU.

Helps machine builders reduce cabling, simplify installation, and improve system efficiency in industrial environments.

The expansion of the Puls FIEPOS (FIEld POwer Supply) product family with new Low Power Class field-mounted power supplies designed for decentralised industrial automation and intralogistics applications has been announced. The new single-phase units complement the existing FIEPOS 360 W and 600 W models, giving system designers and machine builders access to one of the industry’s broadest portfolios of decentralised field power solutions.

The new Low Power field power supplies provide reliable 24 V DC directly in the field while reducing the need for centralized control cabinets and extensive wiring infrastructure. Built for harsh environments with IP65 and IP67 protection, the compact units support installation close to loads in industrial environments, helping manufacturers lower installation costs, simplify machine design and improve overall operational efficiency.

Available in 100 W and 200 W power classes, the new units are engineered for powering sensors, actuators, distributed I/O devices and smaller control systems commonly used in smart manufacturing and intralogistics applications. The portfolio includes versions with NEC Class 2 compliant outputs, dual NEC Class 2 outputs, and 200 W output for additional flexibility in machine and system design.

The FIEPOS Low Power Class devices achieve efficiency ratings up to 95.1%, minimizing energy losses and heat generation while supporting long-term system reliability. With a lifetime exceeding 200,000 hours and industrial-grade construction, the units are designed to maximize uptime in demanding operating conditions.

A selected model with IO-Link communication also enables enhanced diagnostics and remote monitoring, supporting predictive maintenance strategies and improved system visibility in connected industrial environments.

“As manufacturers worldwide continue to embrace decentralised automation concepts, the need for robust and compact field power solutions is increasing across industries,” said Martin Kram, Chief Sales Officer of PULS. “The expansion of our FIEPOS family reflects our commitment to helping customers design more efficient and flexible automation systems by reducing cabling complexity, optimizing machine layouts, and delivering reliable power where it is needed most.”

Supporting the shift toward decentralised automation architectures.
Decentralised power concepts are increasingly being adopted across industrial automation, conveyor systems, warehouse automation, and material handling operations as companies seek to simplify installations and improve scalability. By placing power supplies directly in the field, manufacturers can reduce cabinet space requirements, shorten cable runs, and accelerate system commissioning.

The expanded FIEPOS portfolio strengthens PULS’ position as a leading provider of industrial DC power solutions for both control cabinet and decentralised field applications. The company’s focus on efficiency, durability, and system availability continues to support OEMs, machine builders, and industrial operators across a wide range of automation environments.


@PULSPowerSupply  @proactivefleet #PAuto

Thursday, 27 August 2026

Thermoplastic connectors for multiple industries.

Amphenol Sine Systems’ ATD Series™ connectors are now available from Inelco Hunter. They are engineered for demanding, high‑reliability applications across multiple industries. The ATD Series is a compact, high-density, heavy-duty, thermoplastic solution with superior environmental seals and end caps for exceptional rear seal retention. They are available in a 20 (4+16 Mixed) position layout.

As a hybrid system, these connectors facilitate the simultaneous transmission of power and signals within one unit. Their compact design offers increased flexibility for wire harness designers, enabling efficient space use without sacrificing functionality. The ATD connectors have been developed to be comparable with other similar existing products industry-wide.

The connectors can accommodate a wire range of 14-22AWG, with a current of up to 13A, and up to 16/20 contacts. They are IP67, IP68 and IP69K rated in a mated condition, featuring a thermoplastic housing with integrated latch for secure mating. ATD Series plugs and receptacles include integrated Terminal Position Assurance (TPA) Wedgelocks. Plugs are available with an optional Connector Position Assurance (CPA) Lock, which simplifies assembly, installation, and repair by minimising the need for additional components or specialised tools.

Uses will include demanding applications such as marine, heavy equipment, agricultural, automotive, transport, aviation, alternative energy, as well as many other rugged interconnect applications.


@InelcoHunter @amphenol #PAuto

Wednesday, 26 August 2026

Co-operation in improving OT cybersecurity.

A collaboration to help strengthen OT cybersecurity across critical infrastructure has been announced between the International Society of Automation (ISA) and the Operational Technology Cybersecurity Coalition (OTCC).

The two organisations have signed a Memorandum of Understanding (MOU) to work together on initiatives that raise awareness of OT cybersecurity risks and solutions, explore strategic issues of shared interest and facilitate technical engagement between members of each organisation. The goal is to encourage better implementation and recognition of foundational cybersecurity standards like ISA/IEC 62443, the globally recognised consensus-based series of OT cybersecurity standards developed by ISA.

ISA's CEO, Claire Fallon
“Protecting critical infrastructure requires sustained collaboration, practical guidance and a shared commitment to standards-based cybersecurity,” said Claire Fallon, CEO of ISA. “This partnership creates an important framework for ISA and OTCC to help advance key OT cybersecurity practices.”

"ISA and OTCC come at OT cybersecurity from different angles — ISA through the standards that define good practice, OTCC through the companies putting them to work," said Tatyana Bolton, executive director of OTCC. "Bringing those perspectives together is how standards move from paper into practice, and we look forward to working with ISA to make that happen.”

OTCC recently published a position paper advocating for a single, horizontal standard for OT cybersecurity rather than a patchwork of sector-specific mandates. The paper recommends that ISA/IEC 62443 be recognized as the global OT security standard. It names ISA/IEC 62443 as an established framework uniquely situated to harmonize around, as this standard has been specifically tailored to meet the requirements of OT. With one interoperable OT cybersecurity standard such as ISA/IEC 62443, the OTCC paper argues, the burden of adhering to duplicative standards can be reduced, helping to ensure critical infrastructure and industrial operations stay resilient everywhere.


@ISA_Automation  @automation_com @OT_Coalition #Cybersecurity #PAuto

Updated manufacturing system.

The latest version of Körber's PAS-X Manufacturing Execution System has been released. PAS-X MES 3.4.2 helps pharma and life science manufacturers maximise operational performance while significantly lowering infrastructure and maintenance efforts.

The new version expands shopfloor capabilities and is, for example, well suited for Cell & Gene Therapy (CGT) manufacturing, supporting Chain of Identity and Chain of Custody, material traceability and mobile photo documentation. CGT companies benefit from improved operator guidance, end-to-end traceability and enhanced process security for highly individualised therapies.

Maximised uptime.
PAS-X SmartInstall automates deployments, updates, validation checks, and reporting. The new installation process, based on Kubernetes Operators, reduces installation effort to just a few hours while increasing system availability.

Increased infrastructure efficiency.
Infrastructure requirements have been further reduced by migrating core services to GraalVM, a high-performance runtime environment that optimises Java applications. As a result, memory consumption is reduced by up to 50 percent while startup times are significantly improved, further modernising the PAS-X MES system architecture.

A strategic step for more efficient pharma manufacturing.
“The new PAS-X MES 3.4.2 version is another important step in our mission to help pharma and life science manufacturers achieve greater efficiency with lower operational effort,” says Pierrick Lebigre, Vice President Product, Software, Körber Business Area Pharma. “This release combines enhanced shopfloor capabilities with significant improvements in deployment automation, infrastructure efficiency and system observability. Customers benefit from lower total cost of ownership, faster operations and greater agility in highly regulated manufacturing environments.”

Strong data foundation for analytics and AI.
The new PAS-X Data Access 3.2 version, released alongside PAS-X MES 3.4.2, further strengthens the data foundation of PAS-X MES by doubling the scope of trusted, reusable manufacturing data available to data & analytics teams. The expanded data model provides richer context across processes, materials, products, and sites, enabling deeper operational insight while reducing the long-term effort required to integrate, maintain, and scale MES data across enterprise analytics and AI initiatives.

Improved observability and WMS integration.
The latest PAS-X MES release also introduces new observability tools, providing unified metrics, logs and traces across application, platform and infrastructure layers to accelerate issue detection and resolution. In addition, new warehouse and material management capabilities improve material request and supply workflows, strengthen WMS integration (Warehouse Management System) and increase accessibility of operational data.

PAS-X MES 3.4.2 is available for all deployment models, including on-premise, private cloud and fully managed SaaS environments.


@WerumKarrierec #Koerber  #PAuto #MES #Pharma 

Build lasers with reduced complexity.

Scaling production without losing precision: Automation transforming the laser industry.

Ageing populations are set to put growing pressure on labour markets in Europe, with similar demographic pressures emerging in the US and China. As companies look to stay competitive with fewer workers, automation is becoming increasingly important for boosting productivity. Femtosecond laser company LITILIT says automation will allow it to manufacture 3,000 lasers a year with a team of just over 100 employees.

In a recent report, the European Commission warned that as Europe’s population shrinks and ages, labour market, healthcare, public finances and other sectors will be impacted. Similar aging trends are also visible in the US and China. The report points to automation, innovation and AI as part of the response.

For businesses, automation's benefit goes beyond easing the labour squeeze – it also significantly increases productivity. An August report(pdf) by the International Federation of Robotics found that automation can help smaller manufacturers reach productivity levels and competitive advantages that were previously available mainly to larger industrial companies.

Nikolajus Gavrilinas
According to Nikolajus Gavrilinas, co-founder and CEO of LITILIT, which recently started building a large-scale femtosecond laser facility in Vilnius, the laser industry is a clear example of how automation can help smaller businesses to scale. For LITILIT, it will allow the company to manufacture up to 3,000 femtosecond lasers a year, one of the highest capacities in the world, with just around 150 employees.

"Typically, building a femtosecond laser required highly trained specialists, because these advanced lasers evolved from scientific systems. While they deliver strong performance, they are notoriously difficult to produce at scale. We build ours on a patented, purpose-built architecture with fewer components, allowing us to significantly speed up production and reduce headcount," he says.

Another advantage of automation is making precision repeatable at scale. Femtosecond lasers require tiny optical components to be aligned with extreme accuracy, work traditionally done by highly trained specialists one unit at a time. Automation allows manufacturers to maintain that same level of precision across thousands of lasers while reducing variation between units.

Gavrilinas notes that automated manufacturing will also help LITILIT advance its goal of making femtosecond lasers scalable. The company is on track to finish its Vilnius factory this October and immediately begin production, gradually increasing capacity.

"Femtosecond lasers are used in fast-developing fields, from manufacturing the latest generation of semiconductors and data center equipment to performing complex eye surgeries. As demand for these advanced lasers grows, it would be very difficult to meet it using traditional methods, where complex assembly makes it difficult to scale output," Gavrilinas explains.


@EU_Commission #Litilit #IFR #Robotics #Ai  #PAuto

Tuesday, 25 August 2026

From computer-on-module to cloud.

An active patent for cybersecure communication between operational technology (OT) and IT infrastructure.

aReady.COM from congatec encompasses application-ready embedded hardware and software building blocks, enabling companies to simplify and accelerate the integration of IoT connectivity, security, virtualisation, and AI into their solutions.

Patent number WO2025186118A1 describes the interaction between the conga-zones hypervisor and the conga-connect IoT software running on a COM. The conga-zones hypervisor provides isolated system partitions, operating via a gateway to create strict data separation between the OT data acquisition side and the IT data transmission side. A security barrier between these two virtual machines prevents direct data forwarding from the IT side to the OT side and vice versa. Furthermore, transmission via data projection prevents external access to the OT device via the IT infrastructure, as well as access to the IT infrastructure via the embedded device. This approach enables machine, application, and communication functions to be combined within a single platform that is secure by design.

These modules allow customers to increase functionality on consolidated system architectures, shorten development times, and optimise total cost of ownership (TCO). At the same time, the filing of this patent is a clear indication of congatec’s technical development capabilities and the disruptive potential of its aReady.COM approach. It establishes that congatec consistently thinks beyond COMs as pure hardware, presenting them as pre-integrated, application-ready system building blocks for secure and connected industrial edge applications.

“With aReady.COM, we address key challenges faced by our customers: developing market-ready systems and new digital services for new business models faster; integrating more functionality into their systems; and simultaneously reducing complexity, integration risks, and operating costs,” says Andreas Bergbauer, Manager Solution Management at congatec. “The patent shows how conga-zones and conga-connect work together within aReady.COM to provide secure data exchange as well as isolated functional domains – for example for AI, real-time control, and user interfaces.”

“The patented combination of isolated partitions, controlled data exchange, and VPN-based communication is an important building block for ensuring the security by design of our aReady.COMs in secure and cost-effective edge architectures,” adds Konrad Garhammer, COO & CTO at congatec. “With aReady.COM, we simplify the use of complex embedded technologies and create the basis for simple system consolidation, high functional integration, and optimised TCO in industrial applications.”



All-in-one backup power supply.

Bicker Elektronik is expanding its portfolio of industrial UPS solutions with the intelligent UPSI-2406R2DP1MB DC UPS. The compact 24V backup power supply with integrated Li-Ion battery pack was specifically developed for cost-sensitive applications and combines reliable backup functionality with an economical system design. With 24VDC and an output current of up to 4A, the UPS is suitable for protecting controllers, embedded IPCs, sensors, as well as measurement, control and security technology.

Cost-effective solution for cost-conscious system concepts.
A key advantage of the UPSI-2406R2DP1MB is its integrated 37 Wh Li-Ion battery pack, offering an excellent price-performance ratio. The high energy density of lithium-ion technology enables a compact and lightweight design and reduces the installation space required compared with conventional lead-acid solutions. This makes the DC UPS particularly suitable for applications in which numerous systems need to be reliably protected and where space, weight and overall costs are critical factors.

In addition, the intelligent power-sharing function supports economical dimensioning of the overall system. The available input power is dynamically distributed between load supply and battery charging. This means that the upstream AC/DC power supply does not have to be oversized to accommodate maximum load and charging power simultaneously. This reduces system design effort and enables a demand-oriented, cost-sensitive power supply solution.

Compact Li-Ion technology for 24V systems.
The UPSI-2406R2DP1MB integrates the energy storage, charging and control electronics in a compact device for DIN-rail mounting. The Li-Ion battery pack is certified according to IEC 62133-2. In backup mode, the DC UPS provides a regulated output voltage of 24VDC and reliably protects connected systems in the event of power failure, voltage dips or flicker.

For industrial applications, the UPSI-2406R2DP1MB is designed for an operating temperature range of 0°C to +50°C. Comprehensive protection functions and increased immunity to burst and surge events in accordance with EN 61000-4-4 and EN 61000-4-5 enable reliable operation even in demanding environments.

Interfaces and system integration.
For integration into existing control and automation environments, the UPSI-2406R2DP1MB features front-facing USB-C and RS485 Modbus interfaces as well as a configurable relay contact for signalling a power-fail event. The plug-and-play function enables automatic UPS detection by compatible operating systems. Integrated minimum-load detection and intelligent power distribution support efficient and safe operation.

UPS management software “UPScom”.
For configuration, monitoring and management, Bicker Elektronik provides the “UPScom” UPS management software free of charge. The browser-based software enables real-time monitoring of the state of charge and convenient adjustment of important operating parameters such as shutdown delay, maximum backup time and minimum load. Event-based email notifications can be configured to provide information about relevant operating conditions.

Shutdown & reboot function for IPC systems.
In the event of a power failure, the DC UPS signals the power-fail condition and can initiate a controlled shutdown of connected industrial PCs or embedded systems to prevent data loss. When the supply voltage returns, the integrated reboot function automatically restarts the system. This is particularly beneficial for stand-alone installations or systems that are difficult to access.

Applications.
The UPSI-2406R2DP1MB is suitable for the uninterrupted operation of embedded IPCs, controllers, motor drives, sensors, as well as measurement, control and security technology. Typical applications include control cabinet solutions, automation and control systems, as well as decentralised power supply concepts. With its combination of an integrated Li-Ion battery, compact design and economical system configuration, the DC UPS offers an attractive all-in-one solution, particularly for cost-sensitive applications. The DC UPS is approved according to IEC/EN/UL 61010-1 and IEC/EN/UL 61010-2-201 and is available from stock.


@bicker_de @UnnGmbh @PresseBox #Pauto #PSU

Monday, 24 August 2026

Connect the future of data.

Delivering fibre optic transceivers proven in industrial, defence and networking environments.

Anglia Components has signed a new franchise agreement with Taiwanese manufacturer OptoMedia, expanding its offering to include a comprehensive range of fibre optic transceivers for industrial defence and video applications.

“OptoMedia has the products and technologies to deliver massive, reliable data transmission across long distances, in applications such as Industrial automation, communication networks, IoT, Cloud, Edge computing and AI," said John Bowman, Marketing Director at Anglia. "We are delighted to be able to offer these innovative products to customers across the UK and Europe through Anglia Live.”

Allen Ho, CEO at OptoMedia added: “Our products are a perfect fit for many customers in this region. We chose Anglia as our partner, because they have demonstrated they can provide the perfect combination of innovative 21st Century online supply chain management, hands on technical support, and traditional, personal customer service.”

OptoMedia is a specialist in high-performance optical communication solutions, supplying robust, cost-effective transceivers designed for demanding environments across industrial, video, defence and data infrastructure fibre communication markets. The product portfolio includes a wide range of transceivers including SFF, SFP, Mini-SFF, and SDI data modules, alongside optical converters, HDMI, and KVM solutions. With a strong focus on performance and reliability, OptoMedia products are well suited to demanding environments and are already widely used across defence, industrial, professional broadcast and networking markets. OptoMedia is also a member of both the Profibus & Profinet (PI) and CC-Link organisations and actively works with other members around the world to ensure its solutions are inter-operable with those from other global leaders.


@angliaComponent @Opto_Media @angliaLive @BWW_Comms #Electronics #Fibreoptics #PAuto 

Flow in water and energy applications.

Accurate flow measurement supports more efficient management of water, heat and process energy.

The SFC3000 Flow Computer from EX-i Flow Measurement, has many applications across the water, utilities and process industries, where accurate measurement of liquid and steam flows is increasingly important for managing both resources and energy. Water is a critical resource in many parts of the world, and in industrial applications it can also be considered an effective means of transporting energy in the form of heat. From power generation and industrial processes to cooling systems and district heating, monitoring the movement of water and steam can provide valuable information for improving efficiency, reducing waste and identifying opportunities for energy recovery.

The SFC3000 provides a flexible platform for flow measurement and calculation, making it suitable for applications where flow data needs to be accurately monitored, recorded and integrated into wider process-control systems. In power generation and industrial processing, for example, water and steam flows can represent significant quantities of energy. Hot water may be used to transfer excess process heat, while steam generated as a by-product can potentially be recovered or redirected for other applications. Accurate measurement of these flows is essential when assessing energy balances and determining where efficiency improvements can be made.

Cooling towers provide another important application. While essential to many industrial processes, cooling systems can represent a significant source of energy and water consumption. Monitoring make-up water, circulation and discharge flows can help operators understand system performance, identify losses and assess opportunities to reduce water and energy consumption.

The same principles apply to water treatment and distribution networks. Accurate flow measurement enables operators to monitor consumption, manage distribution and identify potential inefficiencies. In regions where water is a particularly precious resource, reliable measurement can play an important role in supporting responsible management. The SFC3000 can also support applications involving steam and other process fluids, providing a common measurement platform for facilities where water, steam and energy flows are closely interconnected.

By providing reliable flow calculation and monitoring, the SFC3000 enables engineers and operators to turn flow data into actionable information – helping them understand where water and energy are being consumed, where losses may occur and where opportunities exist for recovery and improved efficiency.

EX-i Flow Measurement Ltd specialises in flow measurement solutions for demanding industrial applications. The SFC3000 Flow Computer provides a flexible solution for monitoring and calculating flow in applications ranging from water and process industries to energy and steam measurement.


 @ExiFlow @proactivefleet #PAuto #Water #Energy

Simulating ring resonators - a first.

The multi-topology MT-FIMMPROP photonic simulation tool from Photon Design, which uses its unique, patented and well respected, EigenMode Expansion (EME) computational method, can now simulate ring resonator designs - a first in the photonics industry. The company quantified the performance of its new EME capability in a recent white paper. It concluded that EME delivered equivalent accuracy to industry-standard, Finite Difference Time Domain (FDTD) tools, but was over 100 times faster using a workstation PC, with no cloud processing necessary. Engineers run many simulations to fine-tune photonics designs, so the shorter runtimes provided by EME enable practical, iterative workflows. In addition, the efficiency of the MT-FIMMPROP software itself, also plays a valuable part in engineers achieving optimal, photonic design results.

Dominic Gallagher, CEO of Photon Design, said: “Photon Design’s MT-FIMMPROP is the only EME-based simulation tool to successfully model ring resonators. Our EME delivers the accuracy of FDTD at far faster simulation speeds and without the need for expensive, pay-per-simulation, cloud computing; often needed for FDTD.

“Our recently published white paper showed that MT-FIMMPROP can process a typical 30um-radius ring resonator in just 11 seconds, on a laptop PC. By comparison, FDTD took four hours for a much smaller and simpler, 12um-radius ring resonator, using a workstation PC. FDTD is slower because it requires more than 11 trillion calculations to process the 12um example, with its computational load increasing eight-fold every time the device size doubles. Had FDTD been used for the 30um ring resonator, the simulation would have taken 15 times longer again.

“MT-FIMMPROP is an efficient computational modeller. Unlike FDTD, which processes the entire device bounding box, EME only processes the ring-resonators’ computational regions, which typically make up less than 5% of the device volume. It also enables engineers to combine and reuse repeated computational regions to avoid both design and process duplication. This simplifies the design process, reduces runtimes and actively supports an iterative photonic design approach.”


@photond  #Design #Simulation #PAuto

Low voltage grid status.

The true state of the Low-Voltage Grid - turning feeder data into actionable grid intelligence.

Corinex has announced the launch of the Grid Intelligence Node (GIN), bringing near-real-time measurement and event detection to low-voltage feeders. GIN provides high-precision insight into actual network conditions, creating a grid-truth layer that helps distribution system operators identify constraints, assess available capacity and verify whether grid actions delivered the intended result.

GIN combines high-performance broadband powerline communications with integrated current, voltage, and power-quality monitoring. Installed in secondary substations, street cabinets, and lateral branches, it gives utilities a clearer view of loading and operating conditions across the low-voltage network.

"Electrification is placing new demands on low-voltage grids, but utilities lack the information needed to see or predict where constraints are emerging," said Sam Shi, Chief Technology Officer at Corinex. "GIN tells the DSO when, where and how much control is needed. It provides the evidence for intervention."

Key technical capabilities include:

  • Three-phase voltage and current measurement with RMS error ≤0.5%
  • Measurement of power, power factor, frequency and energy
  • Harmonic monitoring up to the 51st harmonic and total harmonic distortion
  • Detection of voltage sags and swells, overloads and phase imbalance
  • One-minute operational snapshots, 15-minute energy aggregates and optional one-second reporting
  • Support for split-core CT or Rogowski coil sensors
  • Direct connection to 230/400 V networks and MQTT data transmission
  • An operating temperature range of −25°C to +70°C, with an IP67-rated enclosure option

The node combines high-precision metering for secondary substations with BPL communications, allowing feeder-level measurements and power-quality data to be transmitted through the existing low-voltage network. Monitoring up to the 51st harmonic, alongside the detection of voltage sags and swells, overloads and phase imbalance, helps utilities identify operational issues where they emerge and verify the impact of grid interventions.

Building more accurate digital twins.
GIN measurements can feed directly into Corinex Plexigrid Intelligence, connecting near-real-time field data with advanced grid modelling and optimization.

Corinex technology observes conditions across the physical grid, while Plexigrid software reconstructs, models and optimizes the network. Together, they give DSOs a digital representation that more closely reflects actual loading, voltage and power-quality conditions.

This enhanced digital twin helps utilities:

  • Improve low-voltage state estimation and grid model accuracy.
  • Assess available capacity for electric vehicles, heat pumps, and photovoltaic systems.
  • Determine whether constraints should be addressed through flexibility or physical reinforcement.

The result is greater certainty about grid assets and operating conditions, with less reliance on planning assumptions, delayed meter data, and estimated load profiles.

"Digital twins are only as reliable as the information behind them," Shi added. "GIN grounds the model in near-real-time measurements from the physical grid, helping utilities understand available capacity and make better-informed decisions as electrification grows."

Add intelligence without rebuilding the network.
GIN gives utilities a practical way to expand low-voltage visibility through infrastructure already in place. Designed for retrofit installations, it combines Corinex BPL repeater and Ethernet functionality while adding advanced measurement and event detection.

Existing low-voltage power lines carry both communications and measurement data. GridValue™ manages the Corinex BPL network and connected devices, while measurement data can support Corinex Plexigrid Intelligence, ADMS, SCADA and other digital-grid platforms. Utilities can gain a clearer view of network conditions without deploying a separate communications layer or installing revenue-grade meters at every monitoring point.

Its compact, IP67-rated enclosure is designed for demanding grid environments, while split-core current transformer and Rogowski coil options support different conductor sizes and cabinet layouts. GIN provides one-minute operational snapshots and 15-minute energy aggregates, with integration through Ethernet, Modbus RTU, and Modbus TCP.

The Corinex Grid Intelligence Node is available for utility evaluations, pilot projects, and commercial deployments.


@CorinexCorp @PRNewswire #Power #Energy #PAuto

Certification for commercial products procured by US.

ISASecure®, a wholly owned subsidiary of The International Society of Automation (ISA), is partnering with the United States National Security Agency (NSA) to develop a new certification scheme for commercial operational technology (OT) components sold by manufacturers and procured by the US government for use within National Security Systems (NSS). With a common goal of securing high criticality OT systems, the new certification scheme is intended to increase confidence in the security of commercial components.

ISA developed a set of security levels (SL) with specific cybersecurity requirements for OT components in the international OT cybersecurity standard ISA 62443-4-2. In addition, six new technical security requirements were developed and published by NSA’s Operational Technology Assurance Partnership (OTAP) Program in the NSA/CSS Cybersecurity Technical Report titled "Operational Technology Assurance Partnership: Smart Controller Security within National Security Systems" (April 2025).

In response to the need, ISASecure is developing a separate High Criticality Component Security Assurance (HCSA) certification scheme derived from the well-established Component Security Assurance certification scheme (CSA). Upon completion and the OTAP program office's acceptance of the ISASecure HCSA scheme, the NSA will use the scheme as an approved certification mechanism in the evaluation process of adding OT OEM components to the NSS OT Product Compliant List (PCL).

“This is a major achievement in the history of ISASecure,” said Dr. Mark P. DeAngelo, program manager of ISASecure. “The NSA recognizes the importance of the ISA 62443 standard and the ISASecure program, which independently evaluates a product's conformity to the ISA 62443 standard. ISASecure's reputation and commitment to robust OT security precedes the NSA's decision to partner with us. Our CSA product certification set the foundation for HCSA."

An ISASecure HCSA certificate provides a product manufacturer with essential evidence in consideration of that product's inclusion on the NSA's NSS OT PCL. In other words, ISASecure certification is an important step before a smart controller can be purchased and installed within an NSS.

Manufacturers interested in developing smart controllers are encouraged to join ISASecure to be part of the HCSA development. Stakeholders include manufacturers of components, accreditation bodies and certification bodies.


@ISA_Automation  @automation_com @NSAGov #Cybersecurity #PAuto

Vision leader expansion in India.

LMI Technologies (LMI)plans the relocation and expansion of its India operations into a brand-new workspace in Bengaluru. Strategically aligned with LMI's long-term geographic expansion objectives, this new facility will be shared with the Allied Vision team, fostering closer collaboration and synergy between the TKH group entities.

New Location.
LMI Technologies Pvt Ltd
No. 49, Spatium Aranya, Shilpa Vidya,
1st Main Road, JP Nagar Industrial Area Road,
Sarakki Industrial Layout, JP Nagar 3rd Phase,
Bengaluru, Karnataka, India - 560078.

This strategic transition marks a significant upgrade from LMI's previous regional layout and is designed to act as a robust foundation for scaling local system integrator business, engineering support, and regional application capabilities.

By co-locating with Allied Vision, LMI expands its regional infrastructure to effectively combat local low-cost competition in the factory automation sector across the APAC market. The new office underscores LMI’s commitment to operating as a high-value solution partner—delivering advanced 2D and 3D vision technologies, comprehensive integration assistance, and optimized inline workflows directly to manufacturers in the region.

"Our geographic expansion into this brand-new workspace is a pivotal step in strengthening our regional presence and technical infrastructure," said Len Chamberlain, Chief Commercial Officer. "Sharing this facility with Allied Vision enables us to leverage shared expertise, deepen our local partnerships, and deliver an elevated level of hands-on support to our customers as manufacturing capacity continues to shift and scale within India."

The state-of-the-art office will establish a stronger hub for FactorySmart® sensor training, product demonstrations, and localized inspection feasibility testing.


@lmi3d @UnnGmbh @PresseBox #PAuto #India

Maximising battery revenues for battery portfolio.

Ai-driven optimisation, forecasting and Qualified Scheduling Entity services.

Commercial optimisation for 29.7 MW of front-of-the-meter battery storage assets in Texas has been commenced by GridBeyond. This provides Ai-driven optimisation, forecasting and Qualified Scheduling Entity (QSE) services for SmartestEnergy’s South Texas battery portfolio in the USA.

SmartestEnergy's "Texas Ten" PPA portfolio has begun with three 9.9 MW battery energy storage systems located in Cotulla, Palmview and Edinburg, now actively participating in ERCOT’s real-time and day-ahead energy markets under GridBeyond’s optimisation and QSE representation.

The announcement comes as battery storage operators adapt to ERCOT’s Real-Time Co-Optimisation plus Batteries (RTC+B) market design, which went live in December 2025 and has changed how batteries participate in real-time energy and ancillary services markets. With energy and ancillary services now co-optimised in real time, and battery state of charge explicitly considered in market operations, asset owners require more sophisticated forecasting, bidding and dispatch capabilities to compete effectively.

Through its technology platform, GridBeyond combines AI-driven battery optimisation, energy price forecasting, automated bidding and QSE scheduling. This full-stack approach enables each asset to be dispatched into the right market at the right time, maximising revenue opportunities while managing degradation, state of charge and operational constraints.

GridBeyond's proprietary Bid Optimizer is purpose-built for this environment, leveraging advanced Ai to simultaneously optimise across energy and ancillary service products, aligning market price forecasts with battery state-of-charge simulations. This helps battery owners and investors respond to market volatility, capture stacked revenue opportunities and improve long-term asset performance.

Sean McEvoy, US President & Chief Product Officer at GridBeyond, said: "Battery storage is becoming significantly more sophisticated. Success in ERCOT is no longer determined simply by market participation, but by the ability to make thousands of optimisation decisions across multiple value streams while respecting asset constraints. Bringing these three BESS projects into commercial operation in ERCOT demonstrates the strength of our platform and our ability to deliver full-service solutions across multiple US ISO markets. Our team in Austin delivers real-time optimisation, market forecasting, and QSE services to help asset owners capture greater long-term value in one of the world’s most dynamic power markets."

Gavin Baker, VP Trading and Origination, SmartestEnergy US, said, "As ERCOT's market continues to evolve, having the right optimisation strategy and market expertise is critical to maximising the value of battery storage assets. Our continued collaboration with GridBeyond reflects our shared commitment to delivering innovative, data-driven solutions that help assets perform in an increasingly sophisticated market."

Across the U.S., GridBeyond provides optimsation and market access services across CAISO, ERCOT, PJM, MISO, and SPP, managing a rapidly growing portfolio of utility-scale battery storage, large flexible loads, and renewable generation assets. With 5+ GW under management globally and 900+ MW of battery storage, the company continues to expand its North American footprint to meet rising demand for intelligent, technology-led asset management.


@GridBeyond_  @SmartestEnergy  #PAuto #Energy #USA #Ai

Wednesday, 19 August 2026

Precision component company's sustainability.

Trelleborg Sealing Solutions has earned the 2026 Emerson Sustainability Award. A global industrial automation leader, Emerson grants this prestigious recognition to suppliers and partners that ‘integrate environmental responsibility into their strategic business practices, reduce greenhouse gas emissions, and promote transparency and collaboration with customers and stakeholders.’

Mason Linehan, Sales Engineer managing Emerson’s account for Trelleborg, says: “This award reflects the broader sustainability efforts championed by Trelleborg Group. It’s a testament to how we are protecting essential resources like the environment and people throughout our business.”

Trelleborg supplies precision components used in Emerson's solenoid valve and flow-control automation systems, including complex valve body components manufactured at its facilities in River Falls (WI USA) and Reynosa (MX).

Emerson created its Sustainability Award in 2024 and this year eight supply chain partners worldwide were recognised for their outstanding efforts in environmental sustainability.


@TrelleborgGroup @EmersonExchange @EMR_Automation @Emerson_News #Pauto #Sustainability

Reliability throughout the whole enterprise.

From outer perimeter to inner rack: for a data centre operator, risk rarely comes down to a single system or department

For a data centre operator, risk rarely comes down to a single system or department. It can begin with a cut fence, an intruder approaching a substation, an alarm no one trusted enough to investigate, or a rack that ran hot overnight. The cause may be different, but the consequence is often the same: an interruption to operations that can be costly. More than half of significant data centre outages can now cost a company over $100,000,(€86k) and roughly one in five exceed $1 million (861k), according to the Uptime Institute's 2024 Annual Outage Analysis.

The challenge is that the industry tends to sell protection the way it is organized internally: one function at a time, with perimeter security pitched to the Security Director, substation protection routed to facilities, and rack thermal monitoring and inspection left to reliability engineering. A VP of Operations, however, is responsible for uptime across the entire site, making the fence and the rack part of the same operational risk conversation.

Reliability, not another security line item.
Perimeter detection, electrical monitoring, alarm management, and rack inspections may fall under different departments, but they all serve the same basic purpose: identifying problems early enough to prevent them from affecting operations.

A perimeter breach, for example, often begins as a security event. If the intruder reaches a substation or other critical equipment, it quickly becomes an uptime issue. Security may investigate the incident, but the operational impact will be measured by lost capacity, service disruption, and recovery time. Bringing these controls into a single program gives operators a more complete view of the risk they manage. It also helps reduce the gaps that appear when each department plans, purchases, and operates its systems independently.

Following the risk from the fence inward.
At the outer edge of a property, data centres can stretch for miles of dark, lightly staffed perimeter. Much of that darkness is by design. Many sites are built as low-light facilities to avoid adding light pollution to the surrounding area, which is good for neighboring communities but leaves conventional cameras with little to work with. Thermal imaging removes that dependency, reading the heat signature of a person or vehicle in complete darkness. Detecting movement early matters because the farther a potential threat travels into the site, the less time an operator has to assess and respond.

The solution can be a multilayered security approach, beginning with a radar system such as the Flir R-190/R-290 detecting movement as it approaches or crosses the perimeter. It works in concert with both the bi-spectral FH-Series Ai thermal/visible cameras and the bi-spectral Elara DX-Series thermal/visible PTZ cameras to verify the activity and continue tracking it. Instead of relying on a single sensor or an isolated alarm, the operator receives multiple sources of information that help determine whether the event requires action.

Those detections can feed into Flir Latitude VMS, giving the control room a common view of the event. Flir Nexus® connects sensors and systems so that information gathered at the fence reaches the person responding.

Moving deeper into the property, the substation is one of the most important points of exposure. The equipment feeding power to the data halls is essential to the operation, yet it is often less visible than the systems inside the building.

Fixed radiometric thermal cameras can continuously monitor transformers, electrical connections, and other energized equipment for abnormal temperature changes. While technicians could miss a loose or deteriorating connection during a visual inspection, an infrared camera detects the heat it produces well before the equipment fails. That allows the operations team to investigate and make repairs during a planned maintenance window rather than responding after an outage.

Inside the data hall, the available response time becomes even shorter. GPU-dense racks can draw several times the power of the traditional 8 to 12 kW rack, creating more heat in a smaller space. Under those conditions, a cooling issue or component failure that developed over several days could escalate within minutes.

Periodic handheld inspections also play an important role, as they allow maintenance teams to view assets from multiple angles and distances. Fixed thermal monitoring provides visibility between scheduled surveys, while handheld tools with route-based inspection capabilities, such as the Flir i65 and Assetlink software, support more detailed inspections, analysis, and documentation when a potential issue is identified. Onboard tools such as reference imaging ensure these handheld inspections result in repeatable, trackable thermal data, making it easier to identify changes over time and support repair decisions. When combined with safety equipment such as infrared windows, maintenance teams can help maintain uptime by safely inspecting energized electrical equipment.

Two budgets, one operational problem/
Security and operations are often managed separately, leading different teams to purchase thermal technology for different purposes. The security department may invest in thermal cameras for perimeter protection, while the operations team deploys thermal equipment for electrical inspections, early fire detection, and rack monitoring. Although these purchases are often made independently, they address closely related risks.

Simply put: the purchases come from different budgets because the organization is divided that way. The risk itself is not.

Grand View Research valued the data centre physical security market at $1.87 billion (€1.61b) in 2023 and projects it will reach $4.83 billion (€4.14) by 2030. Mordor Intelligence projects the thermal imaging systems market will grow from $5.78 billion (€4.78b) in 2025 to $8.71 billion (€7.7b) by 2031.

These may appear to be separate markets, but operators experience them as parts of the same uptime challenge. Both are intended to reveal developing issues, provide enough information to act, and prevent a larger disruption.


A more complete reliability picture.

Compliance requirements are also moving operators toward a more coordinated approach. The 2023 edition of NFPA 70B placed greater emphasis on documented electrical maintenance and thermographic inspection. Inspection records, identified deficiencies, and corrective actions are increasingly part of the facility’s broader maintenance and audit process rather than being managed informally or in isolation.

None of this means operators need to replace systems that already work. It means they should view perimeter protection, power monitoring, interior surveillance, rack conditions, and compliance as part of a single reliability program.

Flir supports that full path, from radar and thermal detection at the perimeter to radiometric monitoring of critical equipment inside the facility. By connecting those capabilities, operators gain a clearer view of risk across the site and more time to respond before a condition escalates into an outage.

For most data centre operators, the first step is not another purchase order. It is a change in perspective: seeing the path from the outer fence to the inner rack as one continuous reliability environment.


@flir @mepaxIntPR @UptimeInstitute @GrandViewInc @MordorIntel @NFPA #PAuto #Datacentres #security #Safety

Tuesday, 18 August 2026

Servo drives.

Combine with IEC 61131-3 PLC and remote I/O system for completely integrated automation.

Applied Motion Products' newly launched DIN rail mountable AK series drives, now available through McLennan, offer a choice of open-loop stepper, closed-loop stepper, or full closed-loop servo motion control in a compact feature-rich package in combination with NEMA 11 to NEMA 34 frame motors operating from 24–48 VDC power. The AK series supports EtherCAT, EtherNet/IP, CANopen, and Modbus communication interface options. Maximum precision and performance is assured with a battery-less 17-bit multi-turn absolute encoder that eliminates the need for homing routines and external position sensors, simplifying machine design. Launched at the same time as the AK StepSERVO series, AMP’s MCA6 PLC and MET2 I/O system combine to offer complete machine integration for applications ranging from compact bench-top equipment to larger industrial machinery.

The AK drive series operates in combination with AMP’s Q-Programming software for basic to advanced motion and machine control whilst the new Stepper Suite II software covers USB-C setup for online or offline parameter configuration with an integrated oscilloscope providing real-time monitoring, and a smart fault diagnosis feature that includes corrective actions that can minimize commissioning and downtime. Further features of the AK StepSERVO series include a secondary encoder input that can be used with a load located linear encoder to ensure maximum accuracy for gantry- and linear stage-based mechanical systems. A SIL3 certified STO (Safe Torque Off) provides machine safety compliance, and the drive includes built-in brake control functionality.

Fieldbus interface options include EtherCAT and EtherNet/IP. EtherCAT includes CoE (CAN over EtherCAT) and FoE (File over EtherCAT) with distributed clocks for ultra-precise multi-axis motion and sensor synchronisation. EtherNet/IP supports 14+ add-on instructions for application-specific control integration. Both versions include a compliment of 6-in and 3-out configurable I/O.

In addition, the two new companion platforms launched by AMP offer maximum flexibility for machine builders and automation engineers: the MCA6 Motion PLC is a compact controller that combines machine and motion control from an ARM-based processor with support for PLCopen and IEC 61131-3 programming standards with a device capacity of up to 64 EtherCAT motion axes and 128 other EtherCAT devices. The MET2 I/O system, also EtherCAT-based, is a modular distributed platform that supports up to 32 digital, analogue and temperature sensor modules. Together, these three platforms are designed to operate as an integrated stack; the MCA6 for centralised control, the MET2 for distributed I/O, and the AK Series for multi-axis motion that is capable of advanced motion and machine control including electronic cam, interpolation, synchronisation, and robotic functions - all three systems are unified through a common software environment and shared industrial networking protocol.


@ampmotion @mepaxIntPR #mclennan #PAuto 

Edge Ai for transportation, AMR, and industrial automation applications.

The DeviceEdge AIE-VN34/44 and AIE-VO24/34 is Aetina’s first palm-sized in-vehicle edge Ai systems, powered by NVIDIA Jetson Orin NX and NVIDIA Jetson Orin Nano modules. Delivering up to 100 TOPS of Ai performance and supporting up to four GMSL2 cameras in an ultra-compact, rugged form factor, the new systems are ready for mass production and target smart transportation, autonomous mobile robots (AMR), and industrial automation deployments where space and reliability are equally critical.

James Ho, Manager of Edge Computing Product Division at Aetina remarks: “As real-time, multi-camera perception becomes the sensing layer for Ai agents operating in vehicles, AMRs, and industrial equipment, customers need edge compute that is rugged enough for the field and ready for mass production from day one, Aetina’s palm-sized in-vehicle edge Ai systems bring four-camera GMSL2 support, automotive-grade certification, and NVIDIA Elite Partner-backed BSP support together in one rugged multi-vision platform, helping customers simplify integration and accelerate the deployment of intelligent vision at the edge.”

Compact compute for multi-aamera Ai vision.
As AI-powered vision systems become increasingly essential across smart cities, intelligent transportation, and industrial automation, real-time processing of high-quality, multi-camera video streams within space-constrained environments remains a persistent challenge. The AIE-VN34/44 and AIE-VO24/34 address this directly: powered by NVIDIA Jetson Orin NX (8GB/16GB) and NVIDIA Jetson Orin Nano with Super Mode (4GB/8GB), the systems deliver up to 100 TOPS and 67 TOPS of Ai performance respectively, packed into a palm-sized 136.3 x 132 x 63 mm chassis. Each system features four GMSL2 (Fakra-Z) ports, enabling long-distance, low-latency multi-camera streaming, real-time Ai inference, and 360-degree environmental perception for surround-view monitoring, blind-spot detection, and situational awareness.

To accelerate system integration, the AIE-VN34/44 and AIE-VO24/34 can be flexibly expanded with Aetina validated GMSL2 adapter boards and camera modules, which support with plug-and-play driver-ready for long-distance image transmission of up to 15 meters. This bundle offering brings together camera sensing, high-speed visual data transmission, and NVIDIA Jetson Orin–powered edge inference, helping customers simplify system integration, shorten development and validation cycles, and achieve highly scalable, customizable Ai deployment.


Rugged, fanless design for continuous field operation.

Engineered for demanding mobile and industrial applications, the AIE-VN34/44 and AIE-VO24/34 pair rugged reliability with flexible connectivity. Both systems have passed MIL-STD-810H shock and vibration testing and carry E-Mark (E24) certification for automotive electronic equipment, streamlining integration into global vehicle markets. A fanless architecture supports stable, throttle-free operation from -25°C to +55°C, while a 9–36V DC wide-voltage input and integrated Ignition Power Control protect against voltage fluctuations and enable safe startup and shutdown. Isolated CAN FD and GPIO/RS-232 interfaces connect vehicle signals, controllers, sensors, and industrial peripherals, complemented by Gigabit Ethernet (GbE), USB 3.2, HDMI, M.2 M-Key storage, and optional M.2 E-Key wireless expansion.

Scaling Edge Ai Vision Across Transportation, Robotics, and Industrial Automation The convergence of V2X and edge computing continues to drive demand for compact, rugged in-vehicle computing platforms that capable of processing multi-camera vision data locally and in real time. The AIE-VN34/44 and AIE-VO24/34 turn visual data into actionable intelligence for Ai agents and autonomous systems, supporting surround-view monitoring and blind-spot detection for commercial vehicles, obstacle avoidance and path planning for AMRs, real-time defect inspection on production lines, and people tracking and security monitoring across smart retail and building environments.


@AetinaCorp @mepaxIntPR #PAuto #Ai #Transportation

Testbed in Korea.

Korea Testing & Research Institute (KTR), a Korean testing and certification institute, has adopted Anritsu's Radio Communication Test Station MT8000A. The MT8000A supports the FR3 frequency range that is expected to be used in future 6G systems. The adoption enables KTR to establish an FR3 evaluation environment in addition to 4G and 5G.

FR3 is a promising candidate frequency range for next-generation 6G mobile systems, and practical implementation from the research stage requires evaluation environments that take standardisation and certification requirements into account. Against this backdrop, KTR has introduced the solution to support activities ranging from research and development to certification and standardisation verification.

"As a leading testing and certification institute, KTR has proactively established an FR3 testbed to support development of 6G technologies," said a KTR spokesperson. " We will continue to provide reliable testing and evaluation capabilities that help researchers and industry prepare for future 6G standardization and commercialization."

KTR will promote evaluation of FR3 technologies and technical verification toward 6G standardisation in the future, while also exploring future applications of the platform, including 6G signaling tests. In addition, by combining the MT8000A with Anritsu’s automated test software, KTR aims to improve the efficiency and sophistication of research, development, and evaluation activities in the FR3 frequency band.

Through its support for these initiatives, Anritsu helps accelerate development and validation of FR3-related technologies toward 6G standardisation, thereby contributing to development of a technical foundation for future practical implementation of 6G.


@Anritsu @AnritsuEMEA @NapierPR   #KTR #TandM #Communications #Korea

Continuous water quality data.

Around 10 years of continuous water quality data has been generated as a result of a stipulation in a water abstraction licence on the River Medway in Kent (GB). Installed and managed by Meteor Communications, a network of water quality monitoring stations is being used by Southern Water to protect the River Medway and manage related water infrastructure, such as the Bewl Water reservoir.

“Our abstraction licence includes strict water quality requirements at specific locations; not just specifying measurement limits, but also detailing precise sets of conditions that initiate upstream flow management,” explains Tim Taylor, Water Resources Policy & Regulation Manager at Southern Water. “Meteor configured the monitoring stations to monitor the required parameters and to automatically create the necessary alerts. The data are therefore used for two purposes - to demonstrate compliance, and to inform the ongoing management of flow rates in the Medway and its tributaries.”

Background.
Flow rates on the River Medway are collaboratively managed by the Environment Agency and others using a complex system of barriers, locks, and sluices to balance drinking water supply, flood risk, navigation, and ecological health. This includes the management of releases from Bewl Water reservoir by Southern Water.

Southern Water and its legacy authorities hold multiple historical and continuously renewed abstraction licences for the River Medway system. The primary authorisations for the major River Medway and Bewl Water pump-storage scheme were originally established following the Medway Water Act 1968 and the construction of Bewl Water reservoir, which was completed in 1975.

Bewl Water contributes to the management of River Medway flow rates through a seasonal abstraction and release cycle. During wet winter months, surplus water is pumped out of the river into storage, and in summer months, water is released back into the river network to support drinking water supplies. There is an all year-round release from the reservoir to maintain baseline flows. The distance between Bewl Water and the Medway abstraction point represents river water travel time of approximately one day.

Abstraction licence conditions.
In 2013 the Environment Agency published the Medway Abstraction Licensing Strategy using information gathered by a Catchment Abstraction Management Strategy (CAMS) process. The strategy was designed to protect the ecology of water resources through all seasons, and during all conditions from low flow to high flow. This strategy led to the implementation of a complex set of conditions surrounding Southern Water’s River Medway abstraction licence.

Around 10 years ago Southern Water approached Meteor Communications and asked them to adapt their remote water quality monitoring solution to meet the specific requirements of the abstraction licence.

Fundamentally, the licence conditions were designed to ensure that dissolved oxygen (DO) levels in the River Medway did not drop below acceptable levels as a result of the abstraction that is necessary for the ongoing provision of treated drinking water. However, in addition to DO, the licence also required the continuous monitoring of pH, temperature, conductivity, ammonium, turbidity and chlorophyll.

While these parameters are useful indicators of water quality, DO measurements were deemed to be of greatest value because of the relationship between DO and river flow, and because lowered DO levels can have particularly harmful ecological effects.

A network of at least four of Meteor’s ESNET (environmental sensor network) systems monitor water quality at strategic locations downstream with (almost) real-time data continuously fed to the MeteorCloud® platform, which provides secure data access with visualisation, analysis and alerts that have been configured to meet the abstraction licence requirements.

Extracting value from water quality data.
Southern Water’s engineers are able to access live water quality data at any time, and from anywhere, either by logging into MeteorCloud or accessing the data via an API. “The security of the Meteor platform is critically important,” Tim Taylor explains. “This means that the Environment Agency is able to view the same data as us, and as a secure platform they are able to use the data in a court of law if necessary.”

By programming the algorithmic requirements of the abstraction licence into the MeteorCloud platform, Meteor ensured that timely notifications are automatically issued to initiate action to prevent deterioration of dissolved oxygen levels for example.

Collecting remote water quality data.
ESNET systems are available in either a kiosk-based format for permanent bankside deployment, or as a portable system. Both systems employ a multiparameter sonde loaded with the required sensors, and can run on solar power. A telemetry connection allows users to view real-time data remotely. Water quality monitoring sondes can be deployed directly in the river or, in locations where it is necessary to protect the sonde, it can be located in a flow-through chamber through which sample water is pumped.

In the last 10 years, Southern Water has employed up to 12 ESNET systems in the Medway catchment, three of these are estuarine and six are freshwater, with an additional borehole water level logger. However, only 4 of the ESNETs contribute to the abstraction licence calculations. Portable ESNET systems are utilised because the sondes can be safely deployed directly in the water, and because portability brings flexibility in the choice of monitoring location.

Meteor’s customers can either purchase ESNET systems and rent access to MeteorCloud, or rent the entire service – known as Water Quality as a Service (WQaaS). Southern Water’s Medway catchment systems are run on a WQaaS contract under which Meteor staff install, operate, maintain and calibrate the remote equipment.

Explaining the importance of the calibration and service programme, Jack Hambridge from Meteor says: “Sondes typically require service and calibration every 4-6 weeks, so we have invested heavily in a bespoke calibration laboratory and a team of field engineers. This means that we are able to service large numbers of sondes, ensuring that data are accurate and that the ESNET systems are maintained in optimal condition.”

The Medway catchment ESNETs have recently been upgraded to ESNET3, the next-generation version, specifically engineered with enhanced power management, updated hardware, and a more compact footprint to meet stricter environmental regulations.

10 years of continuous water quality data.
Summarising the performance of the Medway monitoring network, Tim Taylor says: “We have been delighted with the service delivered by Meteor Communications. Data access is simple and secure, and the algorithms that Meteor created to meet the abstraction licence have worked very well. As a result, we have been able to stay compliant with the conditions in our Abstraction Licence, and the river’s ecology has been protected.”

Looking forward.
With climate change prompting more intense rainfall and greater risks of drought and floods, river levels can change very quickly. The need for continuous monitoring and alert systems is therefore growing, and with ten years of data, the network in the Medway catchment has clearly shown how such systems can protect water ecology.

Summarising Tim Taylor says: “The abstraction licence stipulates eight water quality parameters, but the alert system and associated water management initiatives are all associated with dissolved oxygen levels. While these parameters are useful indicators of water quality, DO measurements were deemed to be of greatest value because they are a key condition in the Abstraction Licence that impacts the volume of water released from Bewl Reservoir and subsequently abstracted for public water supply.”


@MeteorComms  @SouthernWater @_Enviro_News #Environmental #Water #Britain