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Control Considerations for High Frequency, Resonant, Power Processing Equipment Used in Large Systems

机译:控制大型系统中使用的高频,谐振,功率处理设备的控制考虑因素

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摘要

Addressed is a class of resonant power processing equipment designed to be used in an integrated high frequency (20 KHz domain), utility power system for large, multi-user spacecraft and other aerospace vehicles. It describes a hardware approach, which has been the basis for parametric and physical data used to justify the selection of high frequency ac as the PMAD baseline for the space station. This paper is part of a larger effort undertaken by NASA and General Dynamics to be sure that all potential space station contractors and other aerospace power system designers understand and can comfortably use this technology, which is now widely used in the commercial sector. In this paper, we will examine control requirements, stability, and operational modes; and their hardware impacts from an integrated system point of view. The current space station PMAD system will provide the overall requirements model to develop an understanding of the performance of this type of system with regard to: (1) regulation; (2) power bus stability and voltage control; (3) source impedance; (4) transient response; (5) power factor effects, and (6) limits and overloads.
机译:寻址是一类设计用于集成的高频(20 kHz域),用于大型,多用户航天器和其他航空航天车辆的公用电力系统的谐振电力处理设备。它描述了一种硬件方法,该方法是参数和物理数据的基础,用于证明高频AC作为空间站的PMAD基线的选择。本文是美国国家航空航天局和一般动态所开展的更大努力的一部分,以确保所有潜在的空间站承包商和其他航空航天电力系统设计师理解并可以舒适地使用这项技术,该技术现在广泛地用于商业领域。在本文中,我们将研究控制要求,稳定性和操作模式;及其硬件从集成系统的角度影响。当前的空间站PMAD系统将提供整体要求模型,以了解对以下类型的系统性能的理解:(1)调节; (2)电源总线稳定性和电压控制; (3)源阻抗; (4)瞬态反应; (5)功率因数效应,(6)限制和过载。

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