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马来西亚大型太阳能项目评估:太阳能光伏并网的电力系统分析

Assessment of Malaysia's Large-Scale Solar Projects: Power System Analysis for Solar PV Grid Integration.

作者信息

Khan Rehan, Go YunIi

机构信息

School of Engineering and Physical Science Heriot-Watt University, Malaysia 1 Jalan Venna P5/2, Precinct 5, Wilayah Persekutuan Putrajaya 62200 Putrajaya Malaysia.

出版信息

Glob Chall. 2019 Nov 28;4(2):1900060. doi: 10.1002/gch2.201900060. eCollection 2020 Feb.

Abstract

Malaysia targets to become the second-largest producer of solar photovoltaic (PV) in the world by increasing the current output from 12% to 20% in 2020. The government also expects to achieve 45% reduction of greenhouse gas emission by 2030 through renewable energy mainly by solar PV. Large-scale solar (LSS) aims to produce 2.5 GW, which contributes to 10% of the nation's electricity demands. The LSS system is held back by the grid-scale integration, transmission, and distribution infrastructure. Thus, power system analysis is crucial to achieve optimization in LSS to power grid integration. This paper investigates various power system analysis models and recommends an optimized configuration based on Malaysia's LSS scenario. In stage 1, an optimal PV sizing is carried out based on real data of LSS installation in different locations. In stage 2, power analysis is carried out using to analyze the potential difference variation when connected to a nine-bus power system. The potential variation at each bus of the system is assessed and hence provides a feasibility statement on the most effective configurations for LSS-grid integration. This paper serves as the reference model for LSS-grid integration in Malaysia and is expected to be replicated in the other countries with similar conditions.

摘要

马来西亚的目标是到2020年将太阳能光伏(PV)的当前产量从12%提高到20%,从而成为世界第二大太阳能光伏生产国。政府还期望到2030年通过主要利用太阳能光伏的可再生能源实现温室气体排放量减少45%。大规模太阳能(LSS)的目标是生产2.5吉瓦,这将满足该国10%的电力需求。LSS系统受到电网规模整合、输电和配电基础设施的制约。因此,电力系统分析对于实现LSS与电网整合的优化至关重要。本文研究了各种电力系统分析模型,并根据马来西亚的LSS情景推荐了一种优化配置。在第一阶段,根据不同地点LSS安装的实际数据进行最佳光伏规模确定。在第二阶段,使用[此处原文缺失相关内容]进行电力分析,以分析连接到一个九节点电力系统时的电位差变化。评估系统各节点的电位变化,从而为LSS与电网整合的最有效配置提供可行性说明。本文作为马来西亚LSS与电网整合的参考模型,预计将在其他条件相似的国家得到推广。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0d1/7001122/61b61d65bc03/GCH2-4-1900060-g001.jpg

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