利用飞轮储能系统增强孤岛过程后微网频率控制

A. A. Khodadoost Arani, G. Gharehpetian
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引用次数: 10

摘要

近年来,一些分布式发电和负荷的连接产生了微电网。该MG可以在并网模式下运行,也可以与主电网断开连接。电网脱离主电网后,如何保持电网的稳定是一个重要问题。频率稳定性是稳定性的一个方面。利用储能与适当的控制策略可以有效地解决这一问题。本文详细介绍了一种飞轮储能系统(FESS),并将其用于孤岛模式下的频率控制。阐述了DG逆变器的两种控制策略,并针对每个DG和FESS选择了合适的控制策略。仿真由MATLAB/Simulink进行。本文审查了两个案例研究。在两种情况下,讨论了孤岛过程中FESS对频率的影响。仿真结果验证了FESS的正常运行,验证了该应用的有效性。
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Enhancement of microgrid frequency control subsequent to islanding process using flywheel energy storage system
Recently connection of some Distributed generation and load has created Microgrids (MGs). This MG can operate in grid connected mode or disconnects from main grid. Maintaining stability of MG When it is disconnected from main grid, is an important problem. Frequency stability is one of aspects of stability. Using of energy storage with appropriate control strategy can be effective in this subject. In this paper A flywheel energy storage system (FESS) in detailed is described and is used for frequency control in islanding mode. Two control strategies for DGs inverters are stated and suitable method for each DG and FESS is selected. Simulation is carried by MATLAB/Simulink. Two case studies are examined. In two cases, FESS effect on frequency in islanding process is discussed. Results of simulation verify appropriate operation of FESS and confirm effectiveness of this application.
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