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Aegis and Ontario Tech Advance Secure Nuclear-Hybrid Power for Marine Applications

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Aegis Critical Energy Defence (CSE: QESS, OTCQB: QESSF, FSE: JG6) announced a $480,000, multi-year Mitacs Accelerate research collaboration with Ontario Tech University to develop and test a digital-twin-enabled control platform for safe, secure operation of small and micro modular reactor (SMR/MMR) hybrid systems with battery storage in marine environments.

The project will model integrated SMR/MMR-battery architectures, design reactor-aware energy and power management, develop cyber-secure control layers, address transient load management and frequency stabilization, and progress to hardware-in-the-loop testing. Aegis receives cost-shared, non-dilutive funding, 36 internship units of embedded graduate researchers, and a milestone-driven program. The platform is intended to be adaptable to ports, AI data centres, Arctic and remote communities, shipping and disaster-response applications. The research agreement is currently in progress and will be finalized before project execution.

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  • $480,000 Mitacs Accelerate cost-shared, non-dilutive R&D funding
  • 36 internship units providing multi-year access to embedded graduate researchers
  • Milestone-driven research program with defined deliverables for Aegis–Ontario Tech collaboration
  • Platform designed for adaptation to multiple critical-infrastructure markets beyond marine

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$480,000 Mitacs Accelerate project will use digital twins to test secure control systems integrating small and micro modular reactors with battery storage

Vancouver, British Columbia--(Newsfile Corp. - August 12, 2026) - Aegis Critical Energy Defence Corp. (CSE: QESS) (OTCQB: QESSF) (FSE: JG6) ("Aegis" or the "Company") today announced a $480,000, multi-year research collaboration with Ontario Tech University through the Mitacs Accelerate program. The project will develop and test a digital-twin-enabled control platform designed to support the safe, secure and resilient operation of small and micro modular reactor (SMR/MMR) hybrid energy systems in marine environments.

The project will simulate changing loads, system faults and cybersecurity conditions before equipment is deployed, helping researchers test reactor-aware control strategies and reduce technical risk.

The work will be hosted in Ontario Tech's Department of Energy and Nuclear Engineering. Academic supervision will be led by Professors Hossam Gaber, Li Yang and Kirk Atkinson, with Professor Khalil El-Khatib serving as co-supervisor. Together, they bring expertise in nuclear-hybrid systems, energy systems, digital twins and cybersecurity.

The program's 36 internship units will give graduate researchers sustained, hands-on experience in nuclear engineering, energy systems and cybersecurity while helping build the specialized Canadian talent needed to advance secure nuclear-hybrid technologies.

"Integrating small and micro modular reactors with battery storage raises control and safety questions that cannot be answered by studying either system on its own. A digital twin lets us test reactor-aware strategies against realistic load changes, system faults and cyberthreats before anything is built. The project will also give graduate researchers the sustained experience needed to develop Canadian expertise in secure nuclear-hybrid systems," said Dr. Hossam Gaber, Professor in the Department of Energy and Nuclear Engineering at Ontario Tech and academic supervisor for the project.

The approved project is titled "Digital Twin–Enabled Energy Management and Control Framework for the Safe and Secure Operation of SMR/MMR-Based Hybrid Energy Systems for Marine Applications."

This is the second award associated with the project at Ontario Tech, following a Horizon Europe award earlier in 2026, led by Prof. Hossam Gaber. The project will be presented to European industry leaders in fall 2026 to explore additional funding and collaboration opportunities.

Testing Nuclear-Hybrid Systems Before They Are Built

The research program advances the digital-twin-enabled energy management and control framework first announced by Aegis on April 1, 2026. It is focused on the safe, secure and resilient operation of SMR/MMR-based hybrid energy systems in marine environments, with the following core activities:

  • Digital Twin Modelling and Simulation of integrated SMR/MMR and battery energy storage architectures for marine platforms.
  • Reactor-Aware Energy and Power Management (EMS/PMS) control layers that coordinate reactor output, high C-rate battery response and critical loads in real time.
  • Cyber-Secure Control Architectures tailored to nuclear-integrated environments and critical infrastructure.
  • Transient Load Management and Frequency Stabilization to handle rapidly changing and mission-critical operating conditions.
  • Progression to Hardware-in-the-Loop (HIL) Testing and Controller Validation to de-risk commercialization and support future certification.

Significance for Aegis and Investors

Under the Mitacs Accelerate model, Aegis is the industry partner and will benefit from:

  • $480,000 of cost-shared, non-dilutive funding dedicated to core intellectual property in secure nuclear-hybrid control.
  • 36 internship units that provide sustained, multi-year access to graduate researchers in nuclear engineering, energy systems and cyber-secure controls, embedded with Aegis' engineering team.
  • A structured, milestone-driven program that converts the Company's collaboration with Ontario Tech from a general framework into funded, scheduled work with defined deliverables.

"The $480,000 approved research and development grant is a substantial commitment of Canadian applied research capacity to a problem we believe is central to deploying advanced nuclear at sea and on land, It represents another essential component of our broader R&D portfolio, with McMaster serving as a foundational partner across our research programs," said Ramtin Rasoulinezhad, PhD, Chief Executive Officer of Aegis Critical Energy Defence Corp. "Thirty-six internship units give us sustained, multi-year access to graduate researchers in nuclear engineering and secure controls, working alongside our engineering team. It converts our collaboration with Ontario Tech from a framework into funded, scheduled work with defined deliverables."

The Company is currently party to multiple non-disclosure agreements with major international shipbuilding companies in relation to potential marine SMR/MMR integration projects and, in accordance with its corporate governance policies and applicable securities regulations, is presently in an insider trading blackout period.

Market Applications Beyond Marine

Beyond marine applications, the platform could support ports and harbours, AI data centres, Arctic and remote communities, commercial and defence shipping, and disaster-response operations. Across these settings, the control framework could help coordinate SMR/MMR units and batteries, manage rapidly changing loads and support resilient, low-carbon power when conventional grids are unavailable or unreliable.

The current Mitacs Accelerate project builds on the collaborative framework established by Aegis, Malahat Energy Systems Inc. and Ontario Tech through a memorandum of understanding announced February 4, 2026. It also follows the Mitacs–Horizon Europe International Mobility Award announced April 23, 2026, advancing the partnership from an initial framework and international engagement to funded, multi-year research.

Together, these initiatives position Aegis to develop a platform technology—a secure, digital-twin-enabled control and simulation stack—that can be adapted to multiple critical-infrastructure markets, from marine and port electrification to AI data centres, Arctic communities, shipping and disaster relief.

The research agreement between Aegis and Ontario Tech University is currently in progress and will be finalized before the project execution begins.

About Mitacs
Mitacs is a national, not-for-profit organization that fosters growth and innovation in Canada by supporting collaboration between academia and industry. In partnership with government and research institutions, Mitacs delivers programs that advance research, develop talent, and accelerate innovation. For more information, visit https://www.mitacs.ca.

About Ontario Tech University
Ontario Tech University is a leading public research institution with strengths in nuclear engineering, energy systems, cyber security, and applied technology - home to Canada's only fully accredited undergraduate nuclear engineering program and the Centre for Small Modular Reactors. For more information, visit https://ontariotechu.ca/.

About Aegis Critical Energy Defence Corp.

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Aegis Critical Energy Defence Corp. (CSE: QESS) (OTCQB: QESSF) (FSE: JG6) is a Canadian-based energy technology company focused on the development of secure and resilient energy systems for critical infrastructure. The Company's integrated platform combines advanced energy storage, hybrid and distributed generation systems, intelligent control architectures and cybersecurity to deliver high-reliability solutions for applications across defence, marine, remote and industrial sectors. For more information, visit www.aegiscriticalenergy.com.

Contact Information

Chris McGillivray

cmcgillivray@aegiscriticalenergy.com

+1(604) 312-3996

www.aegiscriticalenergy.com

Forward-Looking Statements

This news release contains statements that constitute "forward-looking statements." Such forward-looking statements involve known and unknown risks, uncertainties and other factors that may cause Aegis Critical Energy Defence Corp.'s actual results, performance or achievements, or developments in the industry to differ materially from the anticipated results, performance or achievements expressed or implied by such forward-looking statements. Forward-looking statements are statements that are not historical facts and are generally, but not always, identified by the words "expects," "plans," "anticipates," "believes," "intends," "estimates," "projects," "potential" and similar expressions, or that events or conditions "will," "would," "may," "could" or "should" occur. Neither the Canadian Securities Exchange nor its Market Regulator (as that term is defined in the policies of the Canadian Securities Exchange) accepts responsibility for the adequacy or accuracy of this release.

To view the source version of this press release, please visit https://www.newsfilecorp.com/release/309285

FAQ

What is the $480,000 Mitacs Accelerate project Aegis (QESSF) announced on August 12, 2026?

The project is a multi-year, $480,000 Mitacs Accelerate collaboration between Aegis and Ontario Tech University. According to Aegis, it will develop and test a digital-twin-enabled control platform for SMR/MMR-battery hybrid energy systems, focused initially on marine applications and critical infrastructure.

How will the Aegis (QESSF) and Ontario Tech Mitacs project use digital twins for SMR/MMR marine systems?

The project will build digital twin models of integrated SMR/MMR and battery architectures for marine platforms. According to Aegis, simulations will test reactor-aware control strategies under changing loads, system faults and cybersecurity conditions before hardware deployment, helping reduce technical risk and support future hardware-in-the-loop validation.

What benefits does the Mitacs Accelerate collaboration provide to Aegis (QESSF) and its shareholders?

According to Aegis, the company receives $480,000 in cost-shared, non-dilutive funding tied to core secure nuclear-hybrid control IP. It also gains 36 internship units of embedded graduate researchers and a structured, milestone-driven program that converts an existing university collaboration into funded work with defined deliverables.

Which markets could Aegis (QESSF) target with its nuclear-hybrid control platform beyond marine uses?

Beyond marine platforms, the control framework could support ports and harbours, AI data centres, Arctic and remote communities, commercial and defence shipping, and disaster-response operations. According to Aegis, the goal is a platform technology adaptable across multiple critical-infrastructure markets lacking reliable conventional grids.

Who leads the Ontario Tech research team in the Aegis (QESSF) Mitacs project?

Academic supervision is led by Professors Hossam Gaber, Li Yang and Kirk Atkinson, with Professor Khalil El-Khatib as co-supervisor. According to Ontario Tech, they contribute expertise in nuclear-hybrid systems, energy systems, digital twins and cybersecurity within the Department of Energy and Nuclear Engineering.

What is the status of the research agreement between Aegis (QESSF) and Ontario Tech University?

The research agreement is currently in progress and has not yet been finalized. According to Aegis, it will be completed before project execution begins, formalizing the funded, multi-year Mitacs Accelerate collaboration and associated milestones and deliverables for the nuclear-hybrid control platform.