Study on Power Quality Control in Multiple Renewable Energy Hybrid MicroGrid System

Xiangjun Li, Yujin Song, Soo-Bin Han
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引用次数: 61

Abstract

Compounding the various kinds of power sources would impact the quality of power supply within the MicroGrid and cause many control problems to be dealt with. This paper focuses on the stability of MicroGrid operation and discusses the control techniques of combining micro turbine and Fuel cell, Hydrogen tank, and Electrolyzer system hybrid System (FHES) to expand the MicroGrid system's ability for solving power quality issue of frequency fluctuation. The paper examines the feasibility of FHES control, especially dynamic control of electrolyzer system, to secure real power balance and enhance the operation capability of handling frequency fluctuation. It is presented that the Proposed PC control and monitoring system can be considered as a means of power quality control to improve the frequency fluctuation caused by a random power fluctuation on generation and load sides and to relax a tie line power flow fluctuation by the frequency one on the interconnected MicroGrid local power system.
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多可再生能源混合微电网系统电能质量控制研究
多种电源的混合将影响微电网内的供电质量,并造成许多需要处理的控制问题。本文以微电网运行的稳定性为重点,探讨了微涡轮与燃料电池、氢罐和电解槽系统混合系统(FHES)相结合的控制技术,以扩大微电网系统解决频率波动电能质量问题的能力。探讨了FHES控制的可行性,特别是对电解槽系统进行动态控制,以实现真正的功率平衡,提高处理频率波动的运行能力。本文提出的PC控制与监测系统可以作为一种电能质量控制手段,改善发电侧和负荷侧随机功率波动引起的频率波动,缓解互联微电网局部电力系统的频率波动引起的并网潮流波动。
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