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首页> 外文期刊>International Journal of Photoenergy >Efficient and Reliable Solar Panels for Small CubeSat Picosatellites
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Efficient and Reliable Solar Panels for Small CubeSat Picosatellites

机译:用于小型立方体卫星的高效可靠的太阳能电池板

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摘要

CubeSat picosatellites have a limited area of walls for solar cells assembling and the available area has to be effectively shared with other parts, such as planar antennas, optical sensors, camera lens, and access port. With standard size of solar cell strings, it is not possible to construct a reliable solar panel for CubeSat with redundant strings interconnection. Typical solar panels for CubeSat consist of two solar cell strings serially wired with no redundancy in case of solar string failure. The loss of electric energy from one solar panel can cause a serious problem for most picosatellites due to minimum margin in the blueprints of the picosatellite subsystem power budget. In this paper, we propose a new architecture of solar panels for PilsenCUBE CubeSat with a high level of redundancy in the case of solar string failure or following switched power regulator failure. Our solar panels use a high efficiency triple junction GaInP2/GaAs/Ge in the form of small triangle strings from the Spectrolab Company. A suitable technology for precise solar cell assembling is also discussed, because CubeSat picosatellites are usually developed by small teams with limited access to high-end facilities.
机译:CubeSat微型卫星的壁面面积有限,无法组装太阳能电池,可用空间必须与其他部件(如平面天线,光学传感器,摄像头和访问端口)有效共享。对于标准尺寸的太阳能电池串,无法为带有冗余串互连的CubeSat构建可靠的太阳能电池板。 CubeSat的典型太阳能电池板由两个串联的太阳能电池串组成,在太阳能串发生故障的情况下没有冗余。由于微卫星子系统功率预算的设计中的最小余量,一个太阳能电池板的电能损失可能对大多数微卫星造成严重问题。在本文中,我们为PilsenCUBE CubeSat提出了一种新的太阳能电池板架构,该架构可在发生太阳能串故障或开关电源调节器故障的情况下提供高度冗余。我们的太阳能电池板使用Spectrolab公司生产的小三角形串形式的高效三结GaInP2 / GaAs / Ge。还讨论了一种适用于精确太阳能电池组装的合适技术,因为CubeSat微型卫星通常是由小型团队开发的,这些团队使用高端设施的机会有限。

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