BRE and FIA investigate performance of contaminated heat sensors

Research projects on contaminated heat sensors

Building Research Establishment (BRE) and the Fire Industry Association (FIA) are conducting two research projects to investigate the performance of contaminated heat sensors.

One project focuses on heat detectors connected to fire panels, and the other on heat alarms, which are self-contained devices for domestic applications.

As reported by the FIA, obtaining appropriate samples of used devices with supporting information on their history has been the most challenging task.

Need for more samples

BRE and the FIA have expressed their gratitude to everyone who has provided samples so far, particularly those who completed the supporting short questionnaire.

These contributors will be acknowledged in the final report.

However, to ensure statistical significance, at least 200 good samples are required.

To date, a good mix of heat detectors (17 models representing nine manufacturers) has been received.

A small proportion of these detectors have been observed to be operating outside the limits of EN 54-5, but many more samples are needed.

Call for contributions

The BRE and FIA are urging anyone with used heat detectors or heat alarms over five years old or showing signs of significant contamination to download and complete the appropriate questionnaire.

The completed forms should be returned to Gemma Sambells at BRE.

This effort is crucial to obtaining a comprehensive understanding of the performance of these devices and ensuring the research results are statistically significant.

Euralarm issues warning on uncoordinated 2G and 3G network shutdowns

Euralarm emphasises need for coordinated network shutdowns

Following the publication of the European Commission’s White Paper “How to master Europe’s digital infrastructure,” Euralarm has highlighted potential risks and challenges associated with an uncoordinated and premature shutdown of 2G and 3G networks, as reported by Euralarm.

The White Paper addresses the necessity of adapting spectrum management to meet the demands of the Digital Decade, advocating for a coordinated shutdown of 2G and 3G networks while ensuring the ongoing support of essential legacy services such as emergency and critical communications.

As 2G and 3G networks are phased out due to their age or limited bandwidth, many existing products still rely on these networks.

To avoid unintended consequences, Euralarm recommends a gradual and coordinated shutdown.

Euralarm suggests maintaining at least one carrier in each Member State with 2G or 3G services until 2029-2030.

Many EU Member States have yet to set an end date for 2G networks, allowing for a natural transition without compromising safety.

Potential impact on safety and security

Euralarm stresses the importance of 2G networks for many products and services that are critical for safety and security.

Despite the advancements in 4G and 5G technologies, which offer greater data transmission capacity, simple warning or signaling systems often do not require such capabilities.

In France, the decommissioning of 2G and 3G networks will occur in two phases: the end of 2025 to the end of 2026 for 2G, and the end of 2028 to the end of 2029 for 3G.

A study by PricewaterhouseCoopers indicates that, in France alone, 7.8 million devices currently operate on 2G or 3G networks.

A substantial number of these devices may not be migrated by the first deadline, potentially affecting 2.2 to 3.1 million devices.

The EU should encourage Member States to implement a delayed and harmonised shutdown of 2G and 3G networks to prevent risks to public safety.

Need for a European framework for technological switch-offs

Euralarm also calls for a technological switch-off framework to address challenges posed by mobile network transitions.

Similar issues encountered with the 2G and 3G switch-off could arise with 4G, 5G, and future mobile networks.

This proposed European framework should cater to all users, including IoT applications, particularly for safety and security uses.

It should include obligations for operators such as conducting impact assessments, consulting with affected users and sectors, and providing alternative technologies.

Ensuring equivalent mobile coverage on the next network is also essential.

The framework should equip member countries to manage a smooth technological transition and to suspend it if necessary.

Euralarm’s recommendations for the future

Euralarm’s recommendations to the European Commission focus on ensuring a balanced and deliberate approach to network shutdowns.

By advocating for a coordinated transition, Euralarm aims to minimise risks associated with premature decommissioning of 2G and 3G networks.

Their input emphasises the need for continued support for essential services during this transition period.

The organisation also highlights the broader implications for future network technologies, underscoring the necessity of a robust framework to manage these transitions.

This approach aims to safeguard the interests of all users, particularly those relying on these networks for critical safety and security applications.

Dryad Networks and Kinéis form partnership for global wildfire detection

New wildfire detection partnership announced

Dryad Networks, known for ultra-early wildfire detection and forest monitoring, has announced a strategic partnership with Kinéis, a French satellite operator and global Internet of Things (IoT) connectivity provider.

This collaboration will integrate Kinéis’s direct-to-satellite capabilities into Dryad’s next-generation Silvanet wildfire sensors, enabling new deployment possibilities.

Dryad’s solar-powered gas sensors use AI to monitor and detect early signs of wildfires by analysing air quality and identifying gas patterns indicative of fires.

With Kinéis’ satellite constellation, the network will overcome terrestrial limitations, ensuring near real-time global connectivity.

This integration enables early detection of wildfires in remote areas without terrestrial network coverage, sending critical alerts to authorities via Kinéis’ 25 satellites, enhancing emergency response capabilities and aiding in the preservation of natural areas and protection of infrastructure.

Protecting critical linear infrastructure

Power line and rail companies face unique wildfire risks due to their assets spanning vast, remote areas.

Deploying comprehensive sensor coverage in these scenarios has been challenging due to limitations in terrestrial network coverage.

Dryad’s integration of Kinéis’s satellite technology addresses this challenge, enabling direct sensor-to-satellite communication for wildfire detection and prevention along critical corridors.

Installations for linear infrastructure such as powerlines or railways, or in difficult terrain like mountainous regions, will benefit from direct-to-satellite connectivity.

The simplified installation process makes Silvanet wildfire sensors more cost-effective.

This ensures continuous, reliable detection in remote areas, crucial for wildfire mitigation efforts.

When combined with Silvanet LoRaWAN Mesh Gateways, which provide additional capabilities, Kinéis’ space IoT connectivity guarantees uninterrupted service even if terrestrial connectivity is disrupted or sensors are placed outside of gateway range.

Dryad and Kinéis plan to deploy hundreds of thousands of these IoT terminals worldwide over the next three years.

A shared vision for environmental protection

Both Dryad and Kinéis have established themselves as leaders in the IoT landscape.

Kinéis offers expertise in satellite-based IoT solutions, providing insights for environmental protection and ecosystem management, including early fire detection.

Dryad Networks is expanding its presence in wildfire detection with its sensor network technology.

The companies’ technologies are built on compatible satellite IoT protocols, ensuring seamless integration.

Leveraging Semtech’s advanced chipsets, which combine terrestrial LoRaWAN and Kinéis’s satellite connectivity into a single solution, users can deploy products with both terrestrial LPWAN and satellite connectivity.

The first products based on this integration are expected to be available before the end of the year.

Carsten Brinkschulte, CEO of Dryad Networks, said: “We are excited to collaborate with Kinéis, as this partnership not only broadens our technological capabilities but also aligns with our mission to provide comprehensive wildfire protection.

“Integrating Kinéis’s satellite technology with our Silvanet sensors adds a vital layer to our detection ecosystem, especially for linear infrastructure, while reinforcing our commitment to the LoRaWAN mesh networks.”

Alexandre Tisserant, CEO of Kinéis, said: “Dryad Networks is at the forefront of ultra-early fire detection, making them the ideal partner for this expansion.

“By combining our satellite capabilities with Dryad’s innovative sensors, we are creating a truly global, adaptable solution to fight the growing threat of wildfires all over the world.”

Read the IFSJ Exclusive in which Dryad Networks CEO and co-founder Carsten Brinkschulte talks advanced sensor technology and IoT to pioneer early wildfire detection.

Advanced fire safety system at Newham University Hospital boosts safety measures

Newham University Hospital upgrades fire safety system

Newham University Hospital in East London has upgraded its fire safety system with the installation of Advanced MxPro 5 panels.

The installation was carried out by M&G Fire Protection, involving comprehensive rewiring and the addition of multiple new panels.

The project required meticulous planning and execution to ensure the hospital’s round-the-clock operations were not disrupted.

In total, 97 nodes were installed, covering more than 10,000 devices.

The upgrade also considered future enhancements planned over the next three years, adhering to HTM0503 standards governing fire safety in healthcare premises.

M&G Fire Protection’s role in the project

M&G Fire Protection played a crucial role in the installation, leveraging Advanced’s solutions known for their versatile multi-protocol switch-over capabilities and intuitive cause-and-effect configuration.

Steve Middleton, Director of M&G Fire Protection, said: “We opted for Advanced panels due to their flexible cause-and-effect configuration, which makes setup, testing, and maintenance a breeze.

The intuitive display makes the panels very easy to use, and the integration with external services via the BMS card is straightforward and highly beneficial.”

Despite numerous challenges, M&G adopted a phased approach to minimise downtime and maintain system functionality throughout the upgrade.

Advanced’s fire safety solutions

Salvy Vittozzi, Advanced’s Regional Sales Manager for the South East, commented: “Advanced’s fire safety solutions were ideal for Newham University Hospital due to their robust capabilities and ease of integration.

“The flexibility and reliability of our systems ensured that, even with the complex requirements and round-the-clock operations of a major healthcare facility, we could deliver a seamless and effective fire safety solution.”

The project, completed on schedule, underscores Advanced’s commitment to providing cutting-edge fire safety solutions and M&G’s dedication to excellence and collaboration.

The MxPro 5 panel is certified by FM Approvals to EN 54 Parts 2 and 4 and offers a choice of four detector protocols and an open installer network.

MxPro 5 panel features

The MxPro 5 panel stands out for its false alarm management capabilities, which are available as standard.

AlarmCalm delivers control of verification and investigation delays, allowing precise control of false alarm management.

The BMS/graphics interface allows easy integration with BMS systems and graphical control PCs, catering to sites requiring control from multiple graphical PCs.

The ease of installation and configuration, along with a wide range of peripheral options, makes the MxPro 5 highly customisable.

Cygnus SmartNet-Pro wireless fire detection system installed at Heysham Power Station

SmartNet-Pro deployed at Heysham Power Station

Cygnus has installed its 100% wireless and EN 54 certified SmartNet-Pro fire detection and alarm system at the Contractor’s Village at Heysham Power Station 1 in Lancashire.

This installation provides reliable fire protection equipment in a challenging industrial setting, as reported by Cygnus.

Marlowe Fire & Security, based in Manchester, partnered with Equans for this project.

The decision to use Cygnus’ SmartNet-Pro solution was influenced by Marlowe’s positive experience on previous projects with the Cygnus team.

Overcoming installation challenges

The Contractor’s Village, consisting of twenty cabins, is now equipped with Detectors and Manual Call Points, all connected to a SmartNet-Pro Control Panel situated in one of the nearest cabins to the main site.

This setup also includes an interface for signalling to the main site.

Simon Hilton, Systems Account Manager at Marlowe Fire & Security, explained: “We chose SmartNet-Pro thanks to its proven reliability, robustness, and impressive installation speed.

“This project presented quite a challenge due to the amount of metal in the cabin construction, which would cause issues if installing a wired system, and means we needed a product with robust signal strength.

“Thanks to SmartNet’s 100% wireless capabilities, it ensured minimal disruption to the site and was quickly deployable.

“We’ve used Cygnus products before in similar settings and we’ve always been impressed with the outcome and this project was no exception.”

Ensuring continuous safety during maintenance

Heysham Power Station 1, which experiences intermittent maintenance outages, now benefits from SmartNet’s wireless radio devices that form a robust, self-forming, and self-healing mesh network.

This network allows nodes to connect dynamically, providing efficient and reliable network performance.

This feature ensures that the SmartNet fire detection and alarm system remains operational during outages, maintaining continuous on-site safety for workers.

The wireless nature of SmartNet eliminates the cabling complexities that would be problematic in metal structures and offers a scalable solution for future needs.

Advantages of a wireless system

The wireless design of the SmartNet-Pro system facilitates an easy installation process with minimal disruption, which is particularly valuable in industrial environments such as Heysham Power Station 1.

The self-healing mesh network technology enhances the system’s reliability, ensuring consistent protection even during maintenance periods.

SmartNet-Pro’s scalability makes it a viable option for sites with evolving safety requirements.

Euralarm welcomes Safety Technology International to its fire section

New Euralarm member announcement

As reported by Euralarm, Safety Technology International has been welcomed as a new member following a decision by its Board.

The company will join the Fire Section of Euralarm, which is dedicated to monitoring and analysing technological developments and their impacts.

This membership will provide Safety Technology International with insights into European markets, opportunities, and the expertise of EU policies.

Euralarm acts as a guide, helping members understand topics and their impact while prioritising actions regarding standardisation and certification.

Benefits of membership

Companies that join Euralarm gain unique access to European market developments and opportunities.

Members benefit from the expertise and understanding of EU policy, as well as making personal connections with technical and policy-making experts and potential business partners.

Euralarm members, including Safety Technology International, have a voice in Brussels and can influence standardisation and legislative processes.

This membership enhances their ability to gain expertise in standardisation and engage with European institutions and standardisation organisations.

Safety Technology International’s advantages

Safety Technology International will now benefit from Euralarm’s representation services towards European institutions and standardisation organisations.

This includes monitoring legislative and standardisation issues relevant to the industry, such as the energy transition and chemicals regulation.

The new membership will also provide Safety Technology International with access to Euralarm’s extended network of national associations and major companies in the electronic fire safety and security sectors.

This partnership creates opportunities for both sides and strengthens the association.

Fire safety maintenance expansion at Canary Wharf by Telent

Fire safety upgrade at Canary Wharf Elizabeth line station

Fire safety capabilities at the Canary Wharf Elizabeth line station are set for enhancement as reported by Telent.

Transport for London (TfL) awarded a contract to Telent, a specialist in critical national infrastructure, which is now in its fifth month.

Telent, working for Rail for London Infrastructure (RfLI), is tasked with upgrading the existing fire detection and alarm system.

This involves removing redundant components and simplifying the system to improve user-friendliness.

The project will also facilitate future asset upgrades.

Collaboration and progress on the project

Reg Cook, Telent’s Director of Asset Management, stated: “This is a really exciting opportunity for Telent to demonstrate to TfL, our capability in fire safety maintenance, apply our expertise and experience of working on the Elizabeth line, and grow our extensive relationship with TfL even further.

“We’re proud to have made good progress on the project so far and look forward to developing our fire business further with TfL.”

Telent’s responsibilities include verifying and decommissioning unnecessary third-party interfaces.

This collaborative effort across multiple disciplines with TfL aims to make maintenance operations more straightforward at Canary Wharf.

The station, which opened in 2022, is a key hub connecting Canary Wharf with the National Rail network.

Telent’s ongoing commitments

Previously, Telent has been involved in designing and implementing the Remote Fire Isolation Project (RFIP), which allows for safe engineering work without triggering evacuation alarms due to dust or smoke.

Additionally, Telent manages over 250,000 security and access assets across TfL’s estate, including 270 underground stations and depots, as well as more than 80 bus stations and stands.

These assets include 16,000 CCTV cameras, 30,000 public address speakers, and over 3,000 customer interfaces such as help points and information displays.

Long-standing partnership with TfL

Telent has a long-standing relationship with TfL, dating back to 1996.

The company has worked extensively on the Elizabeth line, including maintaining the Driver Only Operation (DOO) CCTV system, which ensures the safe departure of trains.

Telent’s projects also include the Traffic Technology Contract and support for the King’s Coronation with traffic signals work.

Unity Theatre in Liverpool enhances fire safety with new emergency lighting system

Unity Theatre embraces new fire safety technology

Unity Theatre in Liverpool, known for its dedication to new writing, social justice, and community engagement, has enhanced its fire safety with the installation of the FIREscape Nepto system.

The theatre, located on Hope Street in a former synagogue, relies heavily on private benefactors and arts funding to maintain its operations.

As reported by Hochiki Europe, the need for an upgrade to the emergency lighting system was identified by Technical Manager Xenia Bayer.

Facing financial constraints, Bayer discovered the FIREscape Nepto system through the Association of British Theatre Technicians.

The system’s intelligent, self-sufficient, and energy-efficient features were deemed perfect for the theatre’s needs.

Hochiki and Grainger Fire and Security collaboration

Hochiki Europe, in collaboration with Grainger Fire and Security, facilitated the installation of the FIREscape Nepto system.

David Wardman, Managing Director of Grainger Fire and Security, expressed enthusiasm for the project, highlighting their longstanding relationship with Hochiki products.

Will Taylor, who led the installation project, noted the ease of installing the new system.

“Hochiki products are famously easy to install, and FIREscape Nepto was no different.

“We initially scoped 5 to 6 days for the installation plus commission, but it only took 4 days plus a day for commissioning,” Taylor said.

The team was able to retrofit the system using much of the old cabling, further enhancing the project’s efficiency.

Benefits of the new system

The new system has significantly improved the theatre’s operational efficiency and aesthetics.

Bayer praised the communication and cooperation with both the Grainger team and Hochiki.

“The new system is so much more aesthetically pleasing and saves so much space compared to the previous bulky system,” Bayer said.

“The energy savings are substantial, with projected savings of nearly £900 a year.

“The Unity Theatre anticipates that these savings will be reinvested into the theatre’s various projects, benefitting the local and wider theatrical communities.

“The FIREscape Nepto system not only enhances safety but also contributes to the theatre’s financial sustainability.

Positive impact on the community

The installation of the FIREscape Nepto system marks a significant improvement for the Unity Theatre.

The theatre can now continue its mission of fostering community engagement and supporting the arts with a reliable and efficient emergency lighting system.

Overjoyed with the outcome, Bayer expressed gratitude to Hochiki and Grainger Fire and Security: “This new system won’t just replace our old one – it will transform our day-to-day operations and ensure we can continue to shine a light on the arts for years to come, thanks to Hochiki – the show can go on.”

Fire Detection Shop partners with WisuAlarm for fire safety products

WisuAlarm expands presence in UK with new stockist

WisuAlarm has announced that Fire Detection Shop will now stock its latest range of fire safety products, including smoke, heat, and carbon monoxide detectors, as well as interconnected solutions.

As reported by WisuAlarm, the brand prides itself on designing, manufacturing, fulfilling, and supporting its products all under one roof, ensuring peace of mind for customers.

This comprehensive approach is supported by principles of intelligence, innovation, responsibility, and quality.

Statements from company representatives

Steve Boggis, Sales Director at WisuAlarm, expressed excitement about the brand’s growing presence in the UK and Ireland: “The WisuAlarm brand is starting to gain traction in the UK and Ireland market, and we are excited by the opportunities to bring our manufacturing capabilities and technical expertise to this market.

“Having our products available through Fire Detection Shop is an excellent step forward and makes them easily accessible to professional electricians and fire safety engineers in the UK. We look forward to a long and fruitful partnership.”

Nicholas Heap, Managing Director of Fire Detection Shop, also commented on the new partnership: “We are excited by the new brand WisuAlarm and the potential they bring to the market.

“Their fully certified and feature-rich products present a great opportunity to deliver more value and choice for our customers.”

About WisuAlarm Technology

WisuAlarm Technology UK & Ireland, a subsidiary of Dahua Technology, is dedicated to providing advanced fire protection products and solutions.

Based in Maidenhead, Berkshire, the company focuses on offering seamless service and support to clients across the United Kingdom and Ireland.

WisuAlarm utilises technological advancements in video analysis, cloud computing, big data, and intelligent IoT to provide fire prevention and extinguishing services.

The company ensures that all products meet or exceed BSI, CE, and UKCPA standards.

About Fire Detection Shop

Fire Detection Shop has been supplying and servicing fire alarm equipment for over 20 years.

Specialising in fire detection, from alarms to fire door furniture, they offer a wide range of products that allow customers to find everything they need on one website.

Fire Detection Shop provides products, commissioning of equipment, servicing, system design, and installation across the UK via their innovative e-commerce platform.

Exploring Dryad Networks’ digital forest that is changing the face of early wildfire detection

Dryad Networks, led by CEO and co-founder Carsten Brinkschulte, is using advanced sensor technology and IoT to pioneer early wildfire detection

The inspiration for Dryad Networks came to Carsten Brinkschulte CEO and co-founder in 2019 during a particularly intense period of wildfires which received widespread coverage in the news.

After selling a previous company, he found himself at a crossroads, and so decided to utilise his background in telecommunications and technology to address this global issue

Wildfires contribute to up to 20% of global CO2 emissions, equal to the emissions from all vehicular traffic annually.

By mitigating wildfires, Brinkschulte says Dryad’s aim is to substantially reduce carbon emissions, but we can also safeguard biodiversity and minimise financial losses, which range from £180 billion to £900 billion annually.

Silvanet

Silvanet is Dryad’s complete solution for early wildfire detection, along with forest management, growth and health and monitoring.

Derived from the Latin word for ‘forest network,’ it represents Dryad’s foundational technology.

“We are essentially constructing a network within forests to host various applications, the primary one being wildfire detection,” Brinkschulte explains.

“This network utilises sensors capable of detecting the earliest stages of a fire and then communicates the exact location of the fire via geo-coordinates to firefighters.”

The backbone of this system is a large-scale low power, wide area network, which operates similarly to Wi-Fi but is designed for expansive outdoor environments.

It has the enhanced capability to establish a mesh network using robotics, allowing for the creation of extensive IoT networks within forested areas.

These devices are solar-powered and mounted on trees, creating a communications bubble approximately one to two kilometres in radius around each gateway.

“Within this network, we deploy sensors that are specifically designed to detect the presence of a fire by sensing the gases emitted,” he elaborates.

“This integration of advanced sensor technology with IoT infrastructure significantly enhances our ability to detect forest fires swiftly and accurately.”

IoT

Traditional forest fire detection methods predominantly rely on human observation, either by individuals spotting fires from nearby locations and alerting emergency services, or by personnel using binoculars in lookout towers to watch for smoke.

There are also technical methods such as cameras that replicate this visual scanning for smoke plumes above the tree canopy, and satellites that can detect fires from space.

Silvanet represents a new approach by employing gas sensors embedded directly in the forest.

“The sensors detect the specific gases produced by organic combustion, offering an advantage in early fire detection,” says Brinkschulte.

“Traditional satellite technology, while providing an excellent overview for tracking and predicting fire paths, is less effective for detecting small fires due to its high altitude or infrequent passes.

“Cameras, although useful over large areas, cannot detect fires that are concealed under the tree canopy and are less effective at night.”

Dryad’s gas sensors, on the other hand, are positioned close to potential ignition points on the forest floor—such as near paths, campsites, and along power lines—where human activity might spark fires.

“This proximity allows them to detect nascent fires long before they grow large enough to be visible to cameras or satellites,” he explains.

“This early detection capability is crucial for enabling quick response, which is vital for controlling fires while they are still manageable.”

Reliable data

Ensuring the accuracy and reliability of fire detection via IoT sensors, particularly when using gas sensors, presents challenges, primarily due to the complexity of distinguishing genuine fire signatures from other similar signals.

To tackle this issue, Dryad has employed machine learning technology directly within the sensors: “The AI is designed to determine whether the detected gases are indeed indicative of a fire or merely other common but unrelated elements, such as exhaust from a passing diesel truck,” says Brinkschulte.

This use of AI at the sensor level, also known as edge computing, is crucial for Dryad’s system.

“Since our network operates on a narrowband technology, it cannot support the transmission of large volumes of data,” he clarifies.

“By processing data locally within the sensors, we can maintain high accuracy and significantly reduce the likelihood of false positives.

“This method ensures that our fire detection system is both reliable and effective in real-world conditions.”

Proximity

The effective range of one of Dryad’s sensors for detecting a fire is approximately 100 metres in radius, roughly the size of a football field.

This range, says Brinkschulte, allows for early detection, which is crucial in preventing the escalation of fires.

The ability of a sensor to detect a fire within this range depends on several environmental factors such as the volume of combustible material, wind speed and direction, and temperature.

“While our sensors can detect fires beyond this range, the fire would need to grow larger and emit more gases to be detectable at greater distances,” says Brinkschulte.

“That is why our focus is primarily on early detection within high-risk and high-value areas, particularly in the wildland-urban interface, where accurate and early detection is most critical.”

This is achieved this with low-cost, easy-to-install sensors that are designed for longevity and do not require batteries, reducing the risk of introducing potential ignition sources into the forest.

The sensors are compact, about the size of the palm of a hand.

The installation process involves simply drilling a small hole into a tree trunk and securing the sensor with a wooden nail – a method designed to minimise impact on the tree and allow the sensor to remain securely in place for up to ten years.

“We use solar power and supercapacitors for energy,” he tells, explaining that the design philosophy ensures that even though each sensor covers a limited area, they are deployed strategically to maximise coverage and resolution.

Environmental focus

Brinkschulte takes the environmental impact of deploying IoT devices in natural habitats very seriously.

“Our sensors and gateways are designed to be as non-invasive as possible, crucially excluding batteries to eliminate the risk of fire hazards,” he stresses.

“Instead, we utilise supercapacitors and solar panels to power these devices, which negates the introduction of potentially hazardous materials into the forest.”

The primary goal of the detection devices is to mitigate wildfires, particularly those that are human-induced and occur at the wildland-urban interface where property and infrastructure are most at risk.

“By focusing on early detection and prevention, we aim to reduce both the environmental and economic impacts of wildfires,” says Brinkschulte.

Looking ahead

Dryad’s vision is to expand the capabilities of IoT in environmental monitoring well beyond the focus on fire detection.

Future applications include the development of fuel moisture sensors, which will help us assess and manage fire risks by measuring ground moisture.

Additionally, the company has plans to monitor other crucial ecological metrics, such as tree growth, soil moisture levels, and even the water flow within tree stems.

These advancements will utilise the existing Silvanet network infrastructure, essentially turning it into a ‘nervous system’ for the forest, broadening its impact on global sustainability.

Brinkschulte shares Dryad’s most ambitious goal, what has calls their ‘moonshot: To develop an autonomous system for extinguishing fires.

“This project hinges on securing the necessary funding, but if successful, we plan to spend the next three years creating an autonomous drone that can actively extinguish fires detected by our network,” he reveals.

“This innovation could significantly enhance our ability to respond to and manage forest fires, marking a significant milestone in the integration of IoT technology with environmental preservation and sustainability efforts.”

This article was originally published in the May 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.