Modeling and control of energy storage system in a microgrid using Electromagnetic Simulation Program (ESP)

Changxiang Wang, Ligang Zhao, Di Shi, Chao Hong, Liang Tu, Tinghui Zhou, Cheng Yang, C. Jing
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Abstract

Increasing renewable penetration and deployment of microgrids have the potential to completely change the way the power systems are being operated today. In order to address these emerging challenges, new simulation tools need to be developed to study the influence of renewables, microgrids, distributed generation resources, and the interaction among them. Towards this end, China Southern Power Grid (CSG) developed a new Electromagnetic Simulation Program (ESP) using the state-of-the-art high performance parallel computing technologies. One well-known concern with renewables is the challenge it caused to the voltage control. The intermittent and random nature of renewables cause the voltage to fluctuate in a much more frequent and faster manner, which is difficult to solve with the existing infrastructure. A novel control approach using energy storage system is proposed to solve such issues. This paper presents the modeling of various distributed generators within a microgrid and demonstrates the effectiveness of the proposed control algorithm using this newly developed ESP, through which the advanced features of the software is also showcased.
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基于电磁仿真程序(ESP)的微电网储能系统建模与控制
增加可再生能源的渗透和微电网的部署有可能彻底改变电力系统目前的运行方式。为了应对这些新出现的挑战,需要开发新的仿真工具来研究可再生能源、微电网、分布式发电资源的影响以及它们之间的相互作用。为此,中国南方电网(CSG)利用最先进的高性能并行计算技术开发了新的电磁仿真程序(ESP)。对可再生能源的一个众所周知的担忧是它给电压控制带来的挑战。可再生能源的间歇性和随机性导致电压以更频繁和更快的方式波动,这是现有基础设施难以解决的。为了解决这一问题,提出了一种利用储能系统的新型控制方法。本文介绍了微电网内各种分布式发电机的建模,并利用新开发的ESP证明了所提出的控制算法的有效性,通过该算法也展示了软件的先进特性。
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