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Next-Generation Ultra-Compact Stowage/Lightweight Solar Array System

Completed TRL 4 (started at 3, targeting 4)

Description

Deployable Space Systems, Inc. (DSS) has developed a next-generation high performance solar array system that has game-changing performance metrics in terms of extremely-high specific power and ultra-compact stowage volume. The embodiment is a tensioned membrane-blanket solar array that stows very compactly to nearly the same profile as its photovoltaic flexible blanket assembly, with no auxiliary components expanding beyond the stowed volume envelope of the stowed blanket. This innovation of extremely-compact stowed packaging allows for much higher power to be packaged into a given stowed envelop, enabling significantly higher powered NASA Science and SEP missions, other NASA missions, and other non-NASA missions. The proposed technology particularly enables missions whose stowed volumes are significantly constrained for stowage space due to launching on inexpensive smaller launch vehicles. The technology is also well suited for very large (very high power) solar array systems where stowed packaging the greatest amount of power within a given enveloped is demanded. The proposed next-generation solar array technology is reliable and leverages proven heritage components, materials, and approaches to provide very low risk implementation for the end-user. The proposed technology will produce revolutionary array-system-level performance in terms of industry leading ultra-compact stowage volume, high specific power, lightweight, reliability, modularity, adaptability, affordability, and rapid commercial infusion.

Benefits

NASA space applications are comprised of practically all Space Science, Exploration, Earth Science, Planetary Surface, and other missions that require affordable high-efficiency photovoltaic power production through of an ultra-lightweight, ultra-compact stowage, and highly-modular solar array system. The technology is particularly suited for advanced spacecraft that require high power / high voltage solar array arrays (SEP applications) that require game-changing compact stowed packaging. The technology is suitable for NASA LEO, MEO & GEO, and interplanetary missions. The technology is also well suited for applications requiring scalability/modularity, operability within high radiation environments, high voltage operation, and operation in LILT and HIHT environments.

Non-NASA space applications are comprised of practically all missions that require affordable high-efficiency photovoltaic power production through deployment of an ultra-lightweight, ultra-compact stowage, and highly-modular solar array system. Potential non-NASA commercial and DoD applications span a broad range of high voltage and high power applications that demand ultra-compact stowage. The technology is suitable for non-NASA LEO, MEO & GEO missions. The technology is particularly suited for missions that require game-changing performance in terms of affordability, ultra-lightweight and compact stowage volume.

Details

Technology areaAerospace Power and Energy Storage > Power Generation and Energy Conversion > Photovoltaic Electrical Power
ProgramSmall Business Innovation Research/Small Business Tech Transfer (SBIR/STTR)
Lead organizationDeployable Space Systems, Inc, Goleta, CA
Start date2016-06-10
End date2016-12-09

Project contacts

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How to get involved

This is early/mid-stage (TRL 4) — the most realistic path in is NASA SBIR/STTR, which funds small businesses and research institutions to develop technology aligned with NASA's needs (equity-free, phased funding). Check whether a current SBIR/STTR solicitation topic overlaps with this project's technology area, or contact the project directly (above) to ask.

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