Impact of interconnections and renewable energy integration on the Philippine–Sabah Power Grid systems

IF 1.9 Q4 ENERGY & FUELS
Tristan G. Magallones Jr. , Jai Govind Singh
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引用次数: 0

Abstract

This study presents a comprehensive impact analysis of the rotor angle stability of a proposed international connection between the Philippines and Sabah, Malaysia, as part of the Association of Southeast Asian Nations (ASEAN) Power Grid. This study focuses on modeling and evaluating the dynamic performance of the interconnected system, considering the high penetration of renewable sources. Power flow, small signal stability, and transient stability analyses were conducted to assess the ability of the proposed linked power system models to withstand small and large disturbances, utilizing the Power Systems Analysis Toolbox (PSAT) software in MATLAB. All components used in the model are documented in the PSAT library. Currently, there is a lack of publicly available studies regarding the implementation of this specific system. Additionally, the study investigates the behavior of a system with a high penetration of renewable energy sources. Based on the findings, this study concludes that a system is generally stable when interconnection is realized, given its appropriate location and dynamic component parameters. Furthermore, the critical eigenvalues of the system also exhibited improvement as the renewable energy sources were augmented

互联和可再生能源整合对菲律宾-沙巴电网系统的影响
本研究对菲律宾和马来西亚沙巴之间拟议的国际连接的转子角稳定性进行了全面的影响分析,该连接是东南亚国家联盟(东盟)电网的一部分。考虑到可再生能源的高渗透率,本研究的重点是建模和评估互联系统的动态性能。利用MATLAB中的电力系统分析工具箱(PSAT)软件,进行潮流、小信号稳定性和暂态稳定性分析,以评估所提出的联网电力系统模型承受小干扰和大干扰的能力。模型中使用的所有组件都记录在PSAT库中。目前,缺乏关于这一具体制度实施的公开研究。此外,该研究还研究了可再生能源高渗透率系统的行为。在此基础上,本研究得出结论:在适当的位置和动态组件参数的条件下,系统在实现互联时是稳定的。随着可再生能源的增加,系统的临界特征值也有所提高
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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来源期刊
Global Energy Interconnection
Global Energy Interconnection Engineering-Automotive Engineering
CiteScore
5.70
自引率
0.00%
发文量
985
审稿时长
15 weeks
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