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Development of a resilient hybrid microgrid with integrated renewable power generations supplying DC and AC loads

机译:开发一种具有弹性的混合微电网,该微电网具有集成的可再生能源发电,可提供直流和交流负载

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This paper presents an experimental study with a pilot hybrid microgrid system that is proposed and implemented in Tagajo campus of Tohoku Gakuin University, Japan. The developed microgrid system is designed to be able to supply power to both DC and AC loads simultaneously by renewable power sources such as PV and wind power generations, etc. Meanwhile, in case that the renewable power is insufficient to supply both these loads, a diesel generator is automatically actuated as backup power source. For the purpose of power balance and voltage stabilization, two types of energy storage devices with different response characteristics and cost, which are secondary battery and EDLC (Electrical Double-layer Capacitor) respectively, are introduced into this system. In this work, a coordinated control strategy for these energy storages were proposed and verified by a series of experimental studies with the developed hybrid microgrid system. The purpose of the experimental study addressed in this paper is to confirm the islanded operation properties of this system for stable power supply to both AC and DC loads, even in case with considerable power fluctuation of renewable sources and significant power change in loads. As a result of this study, it is illustrated that the developed hybrid microgrid and its control systems can work properly and resiliently as being designed.
机译:本文介绍了在日本东北学院大学Tagajo校园中提出并实施的试验性混合微电网系统的实验研究。开发的微电网系统旨在通过可再生能源(例如PV和风力发电等)同时向DC和AC负载供电。同时,如果可再生能源不足以同时为这两个负载供电,柴油发电机自动启动为备用电源。为了达到功率平衡和电压稳定的目的,该系统引入了两种具有不同响应特性和成本的能量存储设备,分别是二次电池和EDLC(双电层电容器)。在这项工作中,提出了一种针对这些能量存储的协调控制策略,并通过使用已开发的混合微电网系统进行的一系列实验研究进行了验证。本文进行实验研究的目的是确认该系统的孤岛运行特性,即使在可再生资源的功率波动很大且负载功率发生重大变化的情况下,也能稳定地为AC和DC负载提供稳定的电源。这项研究的结果表明,所开发的混合微电网及其控制系统可以按设计正常且有弹性地工作。

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