基于电力半在环硬件的月球生境直流微电网模型层次控制研究

A. Dow, R. Darbali-Zamora, J. Flicker, F. Palacios, J. Csank
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引用次数: 2

摘要

随着人们对太空探索兴趣的增长,开发月球栖息地已成为将任务扩展到深空的关键组成部分。为了保证月球栖息地直流微电网的可靠电源管理,需要能够有效管理不同资产(电池、光伏、负载)的控制方案。利用Opal-RT的实时仿真软件和Power硬件在环平台,将提出的分层控制方案进一步发展为硬件解决方案。模拟直流微电网和物理DC/DC组件的实验结果可以更好地实现电池放电控制等应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Hierarchical Control for a Lunar Habitat DC Microgrid Model Using Power Hardware-in-the-Loop
As interest in space exploration grows, developing a lunar habitat has become a key component of extending missions into deep space. To guarantee reliable power management of a lunar habitat's DC microgrid, control schemes are needed that can manage the different assets (batteries, photovoltaics, loads) effectively. Proposed hierarchical control schemes are further developed into hardware solutions using Opal-RT's real-time simulation software and Power Hardware-in-the-Loop platform. Experimental results of a simulated DC microgrid and physical DC/DC components can allow better realization and performance of applications such as battery discharge control.
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