Contingency Analysis of a Power Grid with the Participation of Utility-Scale Solar PV Units: A Case Study from Sarawak, Malaysia

A. Balqis, Z. Khan, A. Haidar, A. Othman
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引用次数: 5

Abstract

Integrating renewable energy resources (RER) into the power grid may jeopardize the whole power system if the penetration level or solar PV uncertainty is not thoroughly managed. The critical impact on the behaviour of power system can be observed during the line outage in a power grid connected with large-scale RER. Therefore, contingency analysis (CA) is crucial to assess such hybrid power grid. This paper proposes a framework based on CA to assess the simultaneous effect of large-scale solar photovoltaic (PV) power plants integrated with the existing power grid, particularly, in the aspects of implementing effective measuring indices. Simulation studies have been carried out on a practical power system, which was modelled by considering the probability of solar irradiance at different locations in Sarawak. The study presented in this paper can provide an insight to identify the level of insecurity for a large-scale deployment of solar PV systems in Sarawak.
公用事业规模太阳能光伏发电机组参与电网的权变分析:以马来西亚沙捞越为例
如果对可再生能源并网的接入水平或太阳能光伏发电的不确定性管理不到位,将危及整个电力系统。在大规模RER连接的电网中,可以观察到线路中断对电力系统行为的关键影响。因此,偶然性分析(CA)对混合电网的评估至关重要。本文提出了一个基于CA的框架来评估大型太阳能光伏电站与现有电网并网的同步效应,特别是在实施有效的测量指标方面。通过考虑沙捞越不同地点太阳辐照度的概率,对一个实际的电力系统进行了模拟研究。本文提出的研究可以为砂拉越大规模部署太阳能光伏系统的不安全程度提供见解。
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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