J. W. Zuckermandel, S. Enger, Neeraj Gupta, Jeff Summers
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FITS uses multifunctional, foldable components that store energy to provide deployment force and deployed stiffness, and have integrated power cabling to meet the demanding mass, cost and power requirements of programs like the TacSat series and anticipated future responsive space missions. MSI has completed the build and qualification test program for a two wing experimental solar array for the Air Force Research Laboratory (AFRL) TacSat-2 mission scheduled for launch in November of 2006. The array utilizes amorphous silicon (a-Si) thin-film photovoltaics on a 1-mil stainless steel substrate from United Solar Ovonic (USOC), integrated with MSIldquos patented FITS solar array deployment system. The experimental solar array will provide 120 W of additional power to the spacecraft in excess of the primary arrays, while providing valuable on-orbit performance data of the TFPV to the aerospace community for future mission planning. MSI is also under contract with AFRL to design, fabricate, and test a 380 W end of life (EOL) FITS wing focusing on the scalability and modularity of the FITS design.","PeriodicalId":6295,"journal":{"name":"2007 IEEE Aerospace Conference","volume":"28 1","pages":"1-6"},"PeriodicalIF":0.0000,"publicationDate":"2007-03-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"6","resultStr":"{\"title\":\"Modular, Thin Film Solar Arrays for Operationally Responsive Spacecraft\",\"authors\":\"J. W. Zuckermandel, S. Enger, Neeraj Gupta, Jeff Summers\",\"doi\":\"10.1109/AERO.2007.352751\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"MicroSat Systems, Inc. (MSI) has developed a low cost, lightweight, solar array system using thin-film photovoltaic (TFPV) material to meet power generation needs for future responsive space missions. The Folded Integrated Thin Film Stiffener (FITS) is the deployment portion of the system. 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引用次数: 6
摘要
MicroSat系统公司(MSI)开发了一种使用薄膜光伏(TFPV)材料的低成本、轻质太阳能电池阵列系统,以满足未来响应式空间任务的发电需求。折叠集成薄膜加强器(FITS)是系统的展开部分。FITS是专门为TFPV设计的一种集成的、被动部署的太阳能阵列结构,但是通过使用FITS部署技术可以利用多种光伏(PV)选项。FITS通过消除传统的刚性结构和机制来扩展空间光伏系统的边界,以最大限度地发挥TFPV的轻量化和低积载体积优势。FITS使用多功能、可折叠的组件来存储能量,以提供部署力和部署刚度,并集成了电力电缆,以满足TacSat系列等项目对质量、成本和功率的苛刻要求,以及预期的未来响应性太空任务。MSI公司已经完成了为空军研究实验室(AFRL)计划于2006年11月发射的TacSat-2任务的两翼实验太阳能阵列的建造和资格测试计划。该阵列利用非晶硅(a- si)薄膜光伏电池在1毫米不锈钢衬底上,该衬底来自United Solar Ovonic (USOC),集成了MSIldquos专利的FITS太阳能阵列部署系统。实验太阳能电池阵列将为航天器提供超过主阵列120瓦的额外功率,同时为未来任务规划提供有价值的TFPV在轨性能数据。MSI还与AFRL签订了设计、制造和测试380 W寿命终止(EOL) FITS机翼的合同,重点是FITS设计的可扩展性和模块化。
Modular, Thin Film Solar Arrays for Operationally Responsive Spacecraft
MicroSat Systems, Inc. (MSI) has developed a low cost, lightweight, solar array system using thin-film photovoltaic (TFPV) material to meet power generation needs for future responsive space missions. The Folded Integrated Thin Film Stiffener (FITS) is the deployment portion of the system. FITS is an integrated, passively deployed solar array structure designed specifically for TFPV, however a variety of photovoltaic (PV) options can be utilized by using the FITS deployment technology. FITS extends the boundaries of space PV systems by eliminating conventional rigid structures and mechanisms to maximize the lightweight and low stowage volume advantages of TFPV. FITS uses multifunctional, foldable components that store energy to provide deployment force and deployed stiffness, and have integrated power cabling to meet the demanding mass, cost and power requirements of programs like the TacSat series and anticipated future responsive space missions. MSI has completed the build and qualification test program for a two wing experimental solar array for the Air Force Research Laboratory (AFRL) TacSat-2 mission scheduled for launch in November of 2006. The array utilizes amorphous silicon (a-Si) thin-film photovoltaics on a 1-mil stainless steel substrate from United Solar Ovonic (USOC), integrated with MSIldquos patented FITS solar array deployment system. The experimental solar array will provide 120 W of additional power to the spacecraft in excess of the primary arrays, while providing valuable on-orbit performance data of the TFPV to the aerospace community for future mission planning. MSI is also under contract with AFRL to design, fabricate, and test a 380 W end of life (EOL) FITS wing focusing on the scalability and modularity of the FITS design.