多分布式能源动态电压调节实验与仿真

Yan Xu, Fangxing Li, J. Kueck, D. Rizy
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引用次数: 5

摘要

分布式能源是位于负荷中心附近的电源,并配备电力电子转换器与电网接口,因此分布式能源在本地提供无功功率(以及有功功率)进行动态电压调节是可行的。本文将同步冷凝器和带逆变器接口的微型水轮机并联在配电系统中,以调节局地电压。介绍了逆变器和同步电容器的电压控制方案。实验结果表明,逆变器和同步电容器都能瞬间调节局部电压,但逆变器的动态响应要比同步电容器快得多。在具有多个局部电压调节的二极管的系统中,研究了二极管之间的相互作用。仿真结果显示了系统电压与电压调节所需无功功率之间的关系。此外,集成电压调节(多个de进行电压调节)可以提高de的电压调节能力,降低资金和运营成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experiment and simulation of dynamic voltage regulation with multiple distributed energy resources
Distributed energy (DE) resources are power sources located near load centers and equipped with power electronics converters to interface with the grid, therefore it is feasible for DE to provide reactive power (along with active power) locally for dynamic voltage regulation. In this paper, a synchronous condenser and a microturbine with an inverter interface are implemented in parallel in a distribution system to regulate the local voltage. Developed voltage control schemes for the inverter and the synchronous condenser are presented. Experimental results show that both the inverter and the synchronous condenser can regulate the local voltage instantaneously although the dynamic response of the inverter is much faster than the synchronous condenser. In a system with multiple DEs performing local voltage regulation, the interaction between the DEs is studied. The simulation results show the relationship between the voltages in the system and the reactive power required for the voltage regulation. Also, integrated voltage regulation (multiple DEs performing voltage regulation) can increase the voltage regulation capability of DEs and reduce the capital and operating costs.
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