Real time frequency stabilization of islanded multi-microgrid

IF 1.5 Q4 ENERGY & FUELS Wind Engineering Pub Date : 2023-02-01 DOI:10.1177/0309524X221147670
Nisha Gnanam, Jamuna Kamaraj
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Abstract

The paper represents a hybrid power system consisting of solar, wind, and Battery sources. The intermittent characteristics of the power system manage the power balance among the generations and load demands. Under these conditions, the system faces high instability. It addresses well-structured PID controllers for the load frequency control in a standalone hybrid microgrid for this problem. The proposed PID controllers offer superior stability. Each Microgrid incorporates the self Maximum Power Point Tracking (MPPT) algorithm to validate the existing microgrids. The test bed has been validated in real-time in Software in Loop (SIL) depending on OPAL-RT 4500 tool.
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孤岛多微电网的实时频率稳定
本文介绍了一种由太阳能、风能和电池组成的混合动力系统。电力系统的间歇性特性管理着各代之间的功率平衡和负荷需求。在这些条件下,系统面临高度不稳定性。针对这一问题,提出了结构良好的PID控制器,用于独立混合微电网的负载频率控制。所提出的PID控制器具有优越的稳定性。每个微电网都结合了自身最大功率点跟踪(MPPT)算法来验证现有的微电网。基于OPAL-RT 4500工具,该试验台在软件循环(SIL)中进行了实时验证。
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来源期刊
Wind Engineering
Wind Engineering ENERGY & FUELS-
CiteScore
4.00
自引率
13.30%
发文量
81
期刊介绍: Having been in continuous publication since 1977, Wind Engineering is the oldest and most authoritative English language journal devoted entirely to the technology of wind energy. Under the direction of a distinguished editor and editorial board, Wind Engineering appears bimonthly with fully refereed contributions from active figures in the field, book notices, and summaries of the more interesting papers from other sources. Papers are published in Wind Engineering on: the aerodynamics of rotors and blades; machine subsystems and components; design; test programmes; power generation and transmission; measuring and recording techniques; installations and applications; and economic, environmental and legal aspects.
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