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Deployable aerospace PV array based on amorphous silicon alloysThe development of the first commercial, ultralight, flexible, deployable, PV array for aerospace applications is discussed. It is based on thin-film, amorphous silicon alloy, multijunction, solar cells deposited on a thin metal or polymer by a proprietary, roll-to-roll process. The array generates over 200 W at AM0 and is made of 20 giant cells, each 54 cm x 29 cm (1566 sq cm in area). Each cell is protected with bypass diodes. Fully encapsulated array blanket and the deployment mechanism weigh about 800 and 500 g, respectively. These data yield power per area ratio of over 60 W/sq m specific power of over 250 W/kg (4 kg/kW) for the blanket and 154 W/kg (6.5 kg/kW) for the power system. When stowed, the array is rolled up to a diameter of 7 cm and a length of 1.11 m. It is deployed quickly to its full area of 2.92 m x 1.11 m, for instant power. Potential applications include power for lightweight space vehicles, high altitude balloons, remotely piloted and tethered vehicles. These developments signal the dawning of a new age of lightweight, deployable, low-cost space arrays in the range from tens to tens of thousands of watts for near-term applications and the feasibility of multi-100 kW to MW arrays for future needs.
Document ID
19890015349
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Hanak, Joseph J.
(Energy Conversion Devices, Inc. Troy, MI, United States)
Walter, Lee
(Energy Conversion Devices, Inc. Troy, MI, United States)
Dobias, David
(Energy Conversion Devices, Inc. Troy, MI, United States)
Flaisher, Harvey
(Energy Conversion Devices, Inc. Troy, MI, United States)
Date Acquired
September 5, 2013
Publication Date
April 1, 1989
Publication Information
Publication: Space Photovoltaic Research and Technology, 1988. High Efficiency, Space Environment, and Array Technology
Subject Category
Energy Production And Conversion
Accession Number
89N24720
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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