自由空间站的电力电子应用

R. L. Pickrell, I. Lazbin
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引用次数: 0

摘要

美国国家航空航天局计划在20世纪90年代末建立一个永久载人空间站,这需要开发和组装一个光伏(PV)电源系统,在轨道运行期间平均提供高达75千瓦的电力。在太阳和日食期间,电力需求将通过光伏电源、存储和控制元件的组合来满足。作者讨论了电力电子和控制的应用,以管理电力的产生、储存和分配,以满足电站负荷,以及用于分析和模拟光伏发电系统的计算机模型。定义了电源集成控制在日照期间调节蓄电功率的要求限流、断路器中断电流值和电气故障保护方法。基于这些需求,已经定义了操作概念,这些概念随后成为特定系统和元件设计的驱动因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power electronic applications for Space Station Freedom
NASA plans to orbit a permanently manned space station in the late 1990s, which requires development and assembly of a photovoltaic (PV) power source system to supply up to 75 kW of electrical power average during the orbital period. The electrical power requirements are to be met by a combination of PV source, storage, and control elements for the Sun and eclipse periods. The authors discuss the application of power electronics and controls to manage the generation, storage, and distribution of power to meet the station loads, as well as the computer models used for analysis and simulation of the PV power system. The requirements for power source integrated controls to adjust storage charge power during the insolation period current limiting, breaker interrupt current values, and the electrical fault protection approach are defined. Based on these requirements, operating concepts have been defined which then become drivers for specific system and element design.<>
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