Modular Wind Power for Northern Operations
Public summary
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This appears to be an open Canadian defence-innovation challenge seeking modular wind-powered electricity systems for remote northern DND/CAF locations. The proposed systems would need to produce approximately 25–100 kW, operate reliably in extreme cold, high winds and icing, and be transportable, deployable and maintainable in isolated areas with limited heavy-lift equipment. Designs should also address low and high wind conditions, minimal human intervention, locally serviceable parts and the challenges of permafrost movement and seasonal ground conditions. The opportunity is issued under the IDEaS Call for Proposals 006 and may accept technologies from early research through mature systems (TRL 1–9). Potential funding levels are: - Component 1a (TRL 1–3): up to $250,000 CAD for up to 6 months - Component 1b (TRL 4–5): up to $1.5 million CAD for up to 12 months - Component 2 (TRL 6–9): up to $5 million CAD, with the performance period determined during negotiations Multiple contracts could result, but the stated amounts do not guarantee funding or a contract. The notice closes October 20, 2026, at 2:00 p.m. A proposal is to be submitted through the Defence Innovation Portal after reviewing the challenge and the IDEaS call documents. This may be relevant to Canadian businesses, researchers or technology developers with applicable wind-energy, cold-climate engineering, remote logistics, power-generation or defence capabilities. The available description is truncated, so the full essential outcomes, evaluation criteria, security or contracting requirements and submission instructions should be reviewed carefully. Before submitting anything, verify the current official tender notice and all amendments—particularly the two linked PDFs—and confirm the closing time, eligible applicant requirements, applicable component and portal instructions. Bid Maple is not affiliated with the Government of Canada.
Requirement preview
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- The proposal should be submitted under the IDEaS Program Call for Proposals, CFP Call 006 (W7714-248676/A), and should address Challenge W7714-248676/016, “Modular Wind Power For North Operations.”
- The challenge is open to proposals under Component 1a, Component 1b, and Component 2. Proposed solutions with technology readiness levels (TRL) 1–9 may be submitted.
- The proposed solution must provide a wind-powered electrical generation system in the 25–100 kW range.
- The solution is expected to be modular, transportable, deployable, and maintainable in remote northern locations, including sites with limited or no road access.
Source description preview
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This Challenge notice is issued under the Innovation for Defence Excellence and Security (IDEaS) Program Call for Proposals (CFP) Call 006 (W7714-248676/A).Solicitation Documents reference: See bidding details section. *For additional general information on the IDEaS Program,visit: https://www.canada.ca/en/department-national-defence/programs/defence-ideas.html _____________ This challenge is open to receive proposals for Component 1a, Component 1b and Component 2. Proposed solutions that fall within technology readiness levels (TRL) 1-9 can be submitted to this challenge.Steps to apply: Step 1: read this challenge Step 2:read the Call for Proposals : See bidding details section Step 3:propose your solution here : https://defence-innovation-portal.my.site.com/ _____________ Maximum Funding and Performance Period Multiple contracts could result from this Challenge. The individual maximum contract funding available under Component 1a (TRL 1-3) is up to $250,000 CAD (excluding applicable taxes) for a maximum performance period of up to 6 months. The maximum individual contract funding available under Component 1b (TRL 4-5) is up to $1,500,000 CAD (excluding applicable taxes) for a maximum performance period of 12 months. The maximum individual contract funding available under Component 2 (TRL 6-9) is up to $5,000,000 CAD (excluding applicable taxes). The period of performance will be determined at the time of contract negotiation. The maximum individual contractual funding and the maximum performance period offered under Component 3 will be determined by Canada at the time of contract negotiation. This disclosure is made in good faith and does not commit Canada to contract for the total approximate funding. _____________ Challenge Details Challenge Title: W7714-248676/016 - Modular Wind Power For North Operations The Department of National Defence and Canadian Armed Forces (DND/CAF) are seeking innovative solutions to develop modular, stand-alone wind-powered electric generator systems that can be easily transported, deployed, and maintained in remote northern locations to provide reliable, clean energy under extreme cold, high-wind, and icing conditions. Background & Context The demand for electrical power and space heating in the Canadian Subarctic and High Arctic is fulfilled almost exclusively with diesel-fired generators. The DND/CAF is seeking to reduce reliance on fossil fuels for the generation of electrical power in the North to minimize operational, logistical, and environmental burdens. Wind turbines suitable for DND/CAF operations are in limited use in the North, as existing installations tend to fall outside the desired capacity range. While small units that deliver up to 6 kilowatts (kW) have been deployed in some communities, and commercial turbines typically exceed 1 megawatt (MW), there is a critical gap in the 25–100 kW range—an ideal scale for remote DND sites. In addition, northern operating conditions present major technical and environmental hurdles that must be overcome before wind turbines can be fully exploited as a source of alternative energy. Canada's far North and Arctic regions are characterized by seasonally frozen ground, deep snow, rugged terrain, permafrost, and extreme temperatures that can reach –60 degrees Celsius (°C), with frequent high winds of 80–120 kilometers per hour (km/h). Ice rimming of wind turbine blades further threatens performance and efficiency. Innovative approaches are therefore needed to adapt conventional wind-powered electric generator designs to withstand these harsh northern conditions and operate effectively under both low and high wind scenarios. Climate change adds additional complexity, as thawing and refreezing permafrost can cause buildings and foundations to sink, shift, or crack. While not the primary focus of the challenge, consideration must be given to the design of the foundations to keep the turbines level and stable despite seasonal ground movement. There is a need for wind-powered electricity generators that are logistically efficient, easy to deploy, and maintainable in isolated northern locations. Many DND/CAF sites exist in remote areas or within small Arctic communities that have limited or no road access and must be reached by alternative means of transportation such as barges or heavy-lift aircraft. Consequently, new systems must feature modular designs that can be transported and assembled on site with minimal heavy-lift equipment by non-technicians using commonly available tools. To ensure sustained operation, proposed solutions should use readily available parts, be serviceable by local tradespeople, and operate with minimal human intervention once deployed. Essential Outcomes The proposed solution must: • Provide a design for a wind-powered electrical generation system in the 25–100 kW range, incorporating details of the structural, mechanical, electrical, and control elements required. • Provide integration and operational demonstration plan(s), showing how the wind-powered electric generator system can function in remote northern locations and operate and withstand northern environmental conditions, including extreme cold (down to –60 °C), high winds (up to 120 km/h), and icing conditions without intervention. • Integrate with existing electrical power systems or microgrids and must enable coordinated operation with other energy sources and support performance under varying generation and load conditions. • Use a modular design that allows transport by air or ship — ensuring that individual components fit within a standard 20ft sea container with maximum dimensions of 108 in. (2.74 m) wide × 268 in. (6.81 m) long × 96 in. (2.44 m) high and a maximum weight of 24,000 lb (10,886 kg; 10.9 tonnes). • The modular design must enable onsite assembly without the need for heavy lift equipment. • Support maintainability and repairability in northern environments by ensuring the wind powered electric generator system can be serviced using standard mechanical and electrical tools, without reliance on specialized proprietary equipment or manufacturer field support. Desired Outcomes Proposed solutions should include capabilities such as, but not limited to, the following: • Electromagnetic interference that complies with MIL STD 461G, Department of Defense Interface Standard for the Control of Electromagnetic Interference Characteristics of Subsystems and Equipment. • Foundation design that accounts for Arctic ground conditions, including permafrost, active-layer variation, and freeze-thaw effects, over the intended design life of the generator.
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