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Detailed design of a space based solar power system.

机译:基于空间的太阳能系统的详细设计。

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In 1968, Dr. Peter Glaser (Ledbetter, 2008) first developed the idea of Space Based Solar Power (SBSP), which involved collecting solar power in orbit and then transmitting that power to the surface. However, to this day, despite a lot of discussion about SBSP, there have been no SBSP watts transmitted to the Earth's surface. The International SBSP Initiative (ISI) demonstration is being developed by students at San Jose State University along with members of the NASA Space Portal to beam SBSP watts to the Earth's surface. The ISI demonstration is being developed based on previously designed technologies and concepts to beam power to the surface using a laser. This thesis discusses the detailed design of the ISI, examining the four main system components, the laser system, the instrument bus, the acquisition, tracking and pointing/safety system, and the ground station receiver. It also discusses the design tools that were developed and utilized for this design. From these design tools, the ISI is shown to need a 9.82 m diameter ground receiver for a laser beam generated with 75 cm diameter optics. The thesis also includes preliminary analysis of the ISI system, showing the critical design points for a potential ISI system.
机译:1968年,Peter Glaser博士(Ledbetter,2008年)首先提出了天基太阳能(SBSP)的思想,该思想涉及在轨道上收集太阳能,然后将其传输到地面。但是,到目前为止,尽管对SBSP进行了很多讨论,但尚无SBSP瓦传递到地球表面。圣何塞州立大学的学生正在与美国宇航局太空门户的成员一起开发国际SBSP计划(ISI)演示,以将SBSP瓦特辐射到地球表面。 ISI演示是根据先前设计的技术和概念开发的,以使用激光将功率发射到表面。本文讨论了ISI的详细设计,检查了四个主要系统组件:激光系统,仪器总线,采集,跟踪和指向/安全系统以及地面站接收器。它还讨论了为该设计开发和使用的设计工具。从这些设计工具可以看出,ISI需要一个直径为9.82 m的地面接收器,用于接收直径为75 cm的光学元件产生的激光束。本文还包括对ISI系统的初步分析,显示了潜在ISI系统的关键设计要点。

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