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Power system monitoring and source control of the Space Station Freedom DC power system testbed

机译:空间站自由直流电力系统试验台的电力系统监控和源控制

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摘要

Unlike a terrestrial electric utility which can purchase power from a neighboring utility, the Space Station Freedom (SSF) has strictly limited energy resources; as a result, source control, system monitoring, system protection, and load management are essential to the safe and efficient operation of the SSF Electric Power System (EPS). These functions are being evaluated in the DC Power Management and Distribution (PMAD) Testbed which NASA LeRC has developed at the Power System Facility (PSF) located in Cleveland, Ohio. The testbed is an ideal platform to develop, integrate, and verify power system monitoring and control algorithms. State Estimation (SE) is a monitoring tool used extensively in terrestrial electric utilities to ensure safe power system operation. It uses redundant system information to calculate the actual state of the EPS, to isolate faulty sensors, to determine source operating points, to verify faults detected by subsidiary controllers, and to identify high impedance faults. Source control and monitoring safeguard the power generation and storage subsystems and ensure that the power system operates within safe limits while satisfying user demands with minimal interruptions. System monitoring functions, in coordination with hardware implemented schemes, provide for a complete fault protection system. The objective of this paper is to overview the development and integration of the state estimator and the source control algorithms.
机译:与地面电力公司可以从附近的电力公司购买电力不同,空间站自由(SSF)的能源资源受到严格限制。因此,电源控制,系统监控,系统保护和负载管理对于SSF电力系统(EPS)的安全和高效运行至关重要。 NASA LeRC在位于俄亥俄州克利夫兰的电力系统设施(PSF)开发的直流电源管理和配电(PMAD)测试床上正在评估这些功能。该测试平台是开发,集成和验证电力系统监视和控制算法的理想平台。 State Estimation(SE)是一种监视工具,广泛用于地面电力公司,以确保电力系统安全运行。它使用冗余的系统信息来计算EPS的实际状态,隔离故障传感器,确定源操作点,验证由辅助控制器检测到的故障以及识别高阻抗故障。源代码控制和监视可保护发电和存储子系统,并确保电力系统在安全范围内运行,同时以最小的中断满足用户需求。系统监视功能与硬件实施的方案相配合,可提供完整的故障保护系统。本文的目的是概述状态估计器和源控制算法的开发和集成。

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