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International Space Station U.S. major element laboratory power quality test

机译:国际空间站美国主要元素实验室电力质量试验

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The United States Laboratory Module (U.S. Lab) on the International Space Station (ISS) provides equipment for research and technology development. The ISS Electric Power System (EPS) consists of power generation and power distribution. Primary power is generated (~160 Vdc) by photovoltaic arrays during sunlight and by rechargeable batteries during eclipse. Primary power is converted to secondary power (~120 Vdc) by Dc-to-Dc Converters (DDCUs) and is distributed through a series of solid- state switchgear. The U.S. Lab receives power through a set of DDCUs and the power is distributed to the loads through solid- state relays known as Remote Power Controllers (RPCs). This paper presents the results of the U.S. Lab power quality testing and a description of how compliance with specifications and standards is verified. The testing includes measurements of source and load impedances, noise and ripple voltages, and transients due to load steps among others. The paper outlines the challenges involved in the testing and presents an analysis of the results. In addition, the paper addresses the methods used to verify system stability and how the challenge of verifying a large system for stability and power quality performance with limited time and access points was accomplished.
机译:国际空间站(ISS)的美国实验室模块(美国实验室)为研究和技术开发提供了设备。 ISS电力系统(EPS)包括发电和配电。在阳光下通过光伏阵列和Eclipse期间的可充电电池产生初级电力(〜160 VDC)。通过DC-DC转换器(DDCU)将主要电源转换为二次电源(〜120 VDC),并通过一系列固态开关设备分布。美国实验室通过一组DDCU接收电力,通过称为远程电源控制器(RPC)的固态继电器将电源分发给负载。本文介绍了美国实验室电力质量检测的结果,并验证了如何遵守规范和标准的描述。该测试包括源和负载阻抗,噪声和纹波电压的测量,并且由于负载步骤等而导致的瞬态。本文概述了测试所涉及的挑战,并提出了对结果的分析。此外,该纸张解决了用于验证系统稳定性的方法以及如何完成具有有限时间和接入点的稳定性和电能质量性能的大型系统的挑战。

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