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British start-up’s drone battery boosts range by 50%

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The Structural Battery Company has developed Drone Spine, a battery system that forms part of a heavy-lift drone’s frame. The British start-up says the design can increase range and payload by up to 50%.

The system combines energy storage with the aircraft structure, replacing a separate battery unit with crossbeams that also support the airframe. The company says this cuts weight and frees internal space for payload or propulsion.

A demonstration with ISS Aerospace and Marshall Aerospace tested the design on a 600kg heavy-lift drone using a 400-volt structural battery. According to the company, the aircraft’s mass fell by 45%, allowing it to carry a 220kg payload over more than 100 kilometres.

The development is aimed at sectors where drone range and carrying capacity can limit operations, including emergency medical work, wildfire response, agriculture, military logistics and small satellites.

Wildfire focus

The company pointed to wildfire response as an immediate use case as large fires continue to affect parts of Europe, Canada and the UK. In that setting, a heavier payload and longer range could allow drones to deliver more fire retardant to remote sites and spend less time returning for recharging.

That could matter most in the early stages of a blaze, when response times are short and access can be difficult for ground crews or manned aircraft. A drone able to make repeated retardant drops without the same logistical burden as conventional aircraft could help contain smaller fires before they spread, the company says.

John Moffat, Chief Executive Officer of The Structural Battery Company, set out that case in comments on the product. “The real-life benefits of this are transformative, not least in fighting the kind of wildfires we’re seeing ravaging France, Spain and Canada, as well as some now here in the UK,” Moffat said.

Medical and defence uses

The company also sees use cases in emergency medicine, particularly in hard-to-reach areas where roads are damaged or terrain slows conventional transport. In those situations, heavy-lift drones could carry blood, defibrillators and other medical equipment directly to responders.

“Our Drone Spine innovation will save lives by enabling medical supplies to get to critically ill or injured patients in remote locations far quicker than ever before. It will dramatically improve firefighters’ ability to extinguish wildfires by enabling drones to carry more flame-retardant materials further and to make more trips between battery recharges. In future, we will see many more applications that perhaps none of us have even thought of yet.

With drones increasingly becoming a core component of modern warfare, armed forces equipped with longer-range, heavier-payload uncrewed systems raise the cost of conflict for potential adversaries before a shot is fired, hopefully making wars less likely. Heavy-lift drones with improved battery capability could also be used by armed forces to deliver humanitarian aid and frontline supplies, as well as many other things we haven’t yet even thought of,” Moffat said.

Military applications are part of a wider push to improve the endurance and lifting ability of uncrewed systems. In recent conflicts, drones have taken on a larger role in surveillance, supply and attack missions, increasing demand for designs that can carry more equipment over longer distances.

Design challenge

Battery weight has long been one of the main technical constraints in unmanned aviation, especially for larger aircraft that must balance lift, endurance and payload. Conventional drone designs treat batteries as discrete units that add weight without contributing to the aircraft’s structure.

Drone Spine is intended to address that by making the battery part of the frame. The company says this simplifies one of the more difficult parts of drone development by combining structural and electrical functions in a single component.

The architecture is suited to quadcopter UAVs with a maximum take-off weight of up to 600kg and a payload-to-drone ratio of 4:1, according to the company. That places the design at the heavier end of the commercial and defence drone market, where operators are seeking aircraft that can move meaningful loads rather than perform light inspection or photography work.

Outside aviation, the same concept could be applied to small satellites, where structural panels or chassis components could also store energy. In space systems, reducing the mass allocated to separate power units can free up weight for instruments or other mission equipment.

In agriculture, the appeal is more operational. Heavy-lift drones with greater range could cover larger areas when spraying, seeding or collecting data, reducing the number of return trips needed for charging and potentially making autonomous fieldwork more practical at scale.

The test data provide an early proof point as the company seeks to show that structural batteries can move beyond laboratory concepts into working aircraft. In the demonstration, the 600kg drone carried a 220kg load for more than 100 kilometres.



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Connected building systems pose growing cyber risk

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Restore Information Management has warned that connected building systems are becoming a cyber security risk for organisations, with many businesses failing to secure operational technology such as building management systems, access control and CCTV.

The warning comes as attackers expand their focus beyond traditional IT to target the technology that supports day-to-day building operations. These systems are increasingly internet-connected, remotely managed and linked to cloud services, widening the number of potential entry points for attackers.

Official figures underline the scale of the issue. The latest UK Government Cyber Security Breaches Survey found that 43% of UK businesses experienced a cyber security breach or attack in the past 12 months.

David Robinson, Head of Cybersecurity at Restore Information Management, said many organisations have basic weaknesses across their operational technology environments, particularly default settings and poor access controls.

“Many building systems still rely on default credentials straight out of the box. If these credentials aren’t changed, cyber criminals can gain access to critical systems with relative ease. As today’s digital building systems become increasingly connected, remotely managed and cloud-based, they are evolving faster than many organisations can secure them. Without the right controls, attackers could disrupt critical building systems, disable physical security measures or use them as a route into the wider corporate network,” Robinson said.

Attack surface

Robinson said one of the main steps organisations should take is to establish a full inventory of connected building systems, including building management systems, access control platforms, CCTV networks and environmental controls.

In practice, that means knowing what equipment is connected to the network, who is responsible for managing it and how users, contractors and suppliers can access it. Security teams often have a clearer view of laptops, servers and business applications than of operational technology embedded in buildings, creating a gap that can persist for years.

He also highlighted the risk posed by shared and default credentials. Manufacturer-set passwords remain common across a range of connected systems, and shared accounts can make it difficult to trace activity or remove access when a staff member or contractor leaves.

Restore urged organisations to replace default credentials as soon as systems are deployed, remove shared logins and ensure each employee or contractor has an individual account. That allows access to be monitored and withdrawn when required.

Remote access

Another area of concern is remote access for suppliers and maintenance providers. Building systems often rely on outside specialists for configuration, support and servicing, but these links can remain open long after a project has ended.

Robinson said access should be formally approved, reviewed regularly and removed once work is complete or contracts expire. Dormant contractor accounts, he added, should not remain active.

The issue has become more pressing as facilities technology has become easier to access from outside a site. Remote management can help operators maintain systems across multiple buildings, but it also creates another route that needs oversight from both facilities and cyber security teams.

Network separation

Restore also called for stronger segmentation between operational technology and corporate IT environments. Separating building systems from wider business networks can limit the damage if one part of the estate is compromised.

This matters because attackers who gain access to a connected operational system may try to move laterally into more sensitive parts of the organisation. Segmenting networks can make that movement harder and reduce the impact of a breach.

Security and facilities teams should work together to review legacy environments and identify where older systems can be better isolated. In many organisations, building technology has evolved in stages over a long period, leaving a mix of old and new equipment with varying security controls.

Strategic priority

Robinson’s final point was that operational technology should no longer sit outside mainstream cyber planning. He argued that connected building systems need to be included in an organisation’s wider security strategy, with regular reviews, staff awareness and stronger security design at the point of deployment.

That view reflects a broader shift in cyber risk management as physical infrastructure becomes more digital. Systems once treated mainly as facilities assets are now part of an organisation’s connected estate and can affect both physical security and business continuity if disrupted.

Restore Information Management is one of the UK’s larger information management providers and says it works with more than 6,000 clients, including more than 80% of NHS trusts. “Cyber security is no longer confined to servers and laptops. As buildings become smarter, the systems that control them require the same level of protection as every other critical asset,” Robinson said.



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Prince William-backed helicopter company profits rise

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Airbus Helicopters opened a new £50m headquarters and factory facilities at Oxford Airport in Yarnton.

Opened in September 2024 by Prince William, Airbus Helicopters employs around 250 people in Oxford and has room for 32 helicopters.

New accounts published by the company shows the business reported an annual profit of £10.1m in the calendar year 2025 also its first full year from Oxford.

This was up 13 per cent from £8.9m the year before.

READ MORE: Jeremy Clarkson praised for his efforts as he admits ‘no feeling like it’

Airbus Helicopters said this profit was boosted by a £2.5m foreign exchange gain and was despite a drop in turnover.

“The company has now completed its first full year of operations at the new, larger hangar facility at London Oxford Airport, following the move in July 2024 and the commencement of a 25-year lease agreement,” said Yann Rozo of Airbus Helicopters in a report.

“The company would like to recognise the positive contribution of its customers, employees and other stakeholders in achieving the results of 2025 and looks to further enhance these relationships during 2026.”

Revenue for 2025 was at £138.9m compared with £158.6m the year before.

The decrease in turnover compared to the prior year has been attributed to the timing of aircraft deliveries and the expiry of a Ministry of Defence contract.

Airbus completes helicopters built in France and Germany at its Oxford site before selling on to customers including the National Police Air Service.





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Cequence adds AI Gateway controls for agentic zero trust

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Cequence has introduced new functions in its AI Gateway and updated its Agent Personas system. The release brings model, API and tool controls together under what it calls Agentic Zero Trust.

The update adds AI Discovery, API Registry, LLM Registry and Skill Registry. It also expands Agent Personas so an AI agent’s assigned role determines which models, tools and services it can use.

Cequence is addressing a problem that has emerged as companies roll out AI agents across departments such as finance, marketing, human resources and operations. Security teams often have to review each new use case manually, creating delays and leaving governance split across separate systems for APIs, models and tools.

Under the new approach, an agent’s identity is linked to a defined job description. That description can specify approved large language models, permitted APIs, available tools and relevant guardrails, with those limits enforced through policy rather than case-by-case approval.

Unified controls

The release is designed to cover the main external channels used by AI agents. In Cequence’s framework, MCP governs how agents discover and use tools, the LLM Registry governs calls to and from language models, and the API Registry governs access to back-end services and data.

Agent Personas sit across those layers by binding the agent to a single role-based identity. Cequence argues that this prevents agents from operating beyond their intended remit, even if they encounter exposed credentials or vulnerabilities elsewhere in a system.

The announcement comes amid wider concern over how autonomous software agents are controlled once connected to enterprise applications and data. Companies have adopted scanners, gateways and prompt filters, but many security leaders still lack a single record of which agents are in use, what they can access and how they can be shut down if controls are breached.

Cequence also cited a recent incident disclosed by OpenAI in which two models escaped a sandboxed evaluation environment, crossed the open internet and breached Hugging Face production infrastructure. It used that case to argue that sandboxing alone does not constrain an agent if no policy binds it to a specific job.

“Most vendors look at agent governance and build another approval queue. We looked at it and built the persona instead,” said Shreyans Mehta, Chief Technology Officer and Co-Founder, Cequence. “An agent’s job should automatically determine what it can touch, without relying on a security team to manually map policy by hand every time someone wants a new use case. That’s what makes broad adoption safe and scalable. The agent gets exactly what its job requires, and nothing more.”

What is new

AI Discovery is intended to identify agents, LLM providers and MCP servers already operating inside an organisation by drawing on existing SIEM logs, including systems that did not go through a formal approval process.

According to Cequence, API Registry allows agents to call approved APIs without holding the underlying credentials. Instead, agents authenticate through a single AI Gateway access key, either through a web-based invocation tool or proxied endpoints.

Skill Registry is aimed at security and platform teams that want a pre-approved set of reusable functions for agents. Once a tool or workflow is vetted, it can be reused across different agent deployments without repeating the same review from scratch.

LLM Registry extends that logic to model access. Cequence said it brokers credentials across major LLM providers so agents do not hold a provider API key directly, while built-in data loss prevention checks prompts and responses for blocked content, including encoded payloads and non-approved Unicode characters intended to evade filters.

The registry can also apply model rules at team level, such as steering routine work to lower-cost models while reserving more advanced models for engineering tasks. It also provides token-level usage visibility, plus rate and spending controls linked to the persona behind each request.

Policy mapping

A central part of the release is the claim that policy enforcement can now be automated because the tools, APIs and skills available to an agent are formally catalogued. Without that catalogue, policy decisions have often depended on manual judgment.

“Automatic policy mapping was not possible until now, because there was nothing consistent for a policy engine to reason over,” said Abraham Jeevagunta, Vice President of AI Products, Cequence. “Before API Registry and Skill Registry, every tool and API a persona could be bound to was uncatalogued, so mapping policy to persona was a manual judgment call every time. Now, that record exists and the policy engine can read it directly. It is what lets a business user stand up a correctly governed agent without ever touching AI Gateway’s policy model themselves.”

The new functions are available as part of AI Gateway for existing Cequence customers. Cequence said its platform currently protects more than 10 billion daily API interactions and 4 billion user accounts.



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