ER-2 high altitude solar cell calibration flights

M. Myers, D. Wolford, D. Snyder, M. Piszczor
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引用次数: 1

Abstract

Evaluation of space photovoltaics using ground-based simulators requires primary standard cells which have been characterized in a space or near-space environment. Due to the high cost inherent in testing cells in space, most primary standards are tested on high altitude fixed wing aircraft or balloons. The ER-2 test platform is the latest system developed by the Glenn Research Center (GRC) for near-space photovoltaic characterization. This system offers several improvements over GRC's current Learjet platform including higher altitude, larger testing area, onboard spectrometers, and longer flight season. The ER-2 system was developed by GRC in cooperation with NASA's Armstrong Flight Research Center (AFRC) as well as partners at the Naval Research Laboratory and Air Force Research Laboratory. The system was designed and built between June and September of 2014, with the integration and first flights taking place at AFRC's Palmdale facility in October of 2014. Three flights were made testing cells from GRC as well as commercial industry partners. Cell performance data was successfully collected on all three flights as well as solar spectra. The data was processed using a Langley extrapolation method, and performance results showed a less than half a percent variation between flights, and less than a percent variation from GRC's current Learjet test platform.
ER-2高空太阳能电池校准飞行
使用地面模拟器对空间光伏进行评估需要在空间或近空间环境中具有特征的初级标准电池。由于在太空中进行测试所固有的高成本,大多数初级标准都在高空固定翼飞机或气球上进行测试。ER-2测试平台是格伦研究中心(GRC)为近空间光伏特性开发的最新系统。该系统在GRC目前的Learjet平台上进行了几项改进,包括更高的高度、更大的测试区域、机载光谱仪和更长的飞行季节。ER-2系统由GRC与NASA阿姆斯特朗飞行研究中心(AFRC)以及海军研究实验室和空军研究实验室合作开发。该系统是在2014年6月至9月期间设计和建造的,2014年10月在AFRC的Palmdale设施进行了集成和首次飞行。GRC和商业行业合作伙伴进行了三次飞行测试。在所有三次飞行中都成功地收集了电池性能数据以及太阳光谱。数据使用兰利外推法进行处理,性能结果显示飞行之间的差异小于0.5%,与GRC目前的Learjet测试平台相比,差异小于1%。
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