Hierarchical Supervisory Control System for PEVs Participating in Frequency Regulation of Smart Grids

Keyhaneh Janfeshan, M. Masoum
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引用次数: 19

Abstract

This paper proposes a two-level hierarchical supervisory control system for plug-in electric vehicles (PEVs) participating in frequency regulation in microgrids with interconnected areas. At the lower level, decentralized fuzzy logic control systems are designed for individual PEVs which locally adjust the V2G power flow rates from each vehicle to the grid according to the frequency deviation in each area and the vehicle’s current state of charge (SOC), while maintaining the SOC level above the driver’s requested SOC lower limit. At the grid level, a centralized supervisory control system is used to coordinate the injected power from generating units and PEVs based on the grid demand. Simulation results are presented and analyzed to investigate the performance of the proposed two-level system in a network consisting of three interconnected areas populated with PEVs under load disturbances and wind power fluctuations.
pev参与智能电网频率调节的分层监控系统
针对插电式电动汽车在互联区域微电网中参与频率调节的问题,提出了一种两级分层监控系统。在较低的层次上,分散的模糊逻辑控制系统为单独的pev设计,根据每个区域的频率偏差和车辆的当前充电状态(SOC)局部调整从每辆车到电网的V2G功率流率,同时保持SOC水平高于驾驶员要求的SOC下限。在电网层面,根据电网需求,采用集中监控系统协调发电机组和电动汽车的注入功率。给出了仿真结果并对仿真结果进行了分析,以研究该两级系统在负荷扰动和风力波动下的性能。
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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