Frequency regulation of an isolated hybrid power system with Battery energy storage system

S. Singh, S. Singh, S. Chanana, YP Singh
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引用次数: 18

Abstract

This paper presents operation and control of a hybrid Photovoltiac Power, Diesel-Engine Generator (DEG) - Battery energy storage system (BESS) connected to an isolated power system. A case study on the impact of BESS operations on the frequency stability of the hybrid system has been carried out. The limits on state of charge (SOC) due to limited storage capacity have also been incorporated. Simulation of a hybrid system model has been carried out in two cases, steady state analysis of hybrid system using step load response with PI controller and other real time performance analysis for a typical day with random variation in load demand. Parameters of controllers are optimized with Genetic Algorithm. Simulation of a hybrid system model is done with the Matlab/Simulink environment. Simulation results indicate that BESS system can contribute to frequency stability in both cases when the load increases and when the load drops. This feature of BESS system will be helpful if it is operated along with a hybrid Wind-PV System.
电池储能隔离混合电力系统的频率调节
本文介绍了与孤立电力系统相连接的混合光伏发电-柴油发电机组-蓄电池储能系统的运行与控制。通过实例研究了BESS运行对混合系统频率稳定性的影响。由于存储容量有限,对充电状态(SOC)的限制也被纳入其中。在负荷需求随机变化的典型日,对混合系统模型进行了两种情况下的仿真,一种是基于PI控制器的阶跃负荷响应的混合系统稳态分析,另一种是其他实时性能分析。采用遗传算法对控制器参数进行优化。在Matlab/Simulink环境下对混合系统模型进行了仿真。仿真结果表明,在负荷增加和负荷下降的情况下,BESS系统都有助于频率稳定。BESS系统的这一特点将有助于与混合风能光伏系统一起运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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