使用Etap对光伏和风能渗透到配电网的影响

Rashed R. Waqfi, M. Nour
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引用次数: 12

摘要

根据IRENA的数据,仅在10年的时间里,采用可再生能源纳入其电网目标的国家数量就从43个增加到164个。这些目标将增加可再生能源在电网中的份额,这意味着使用分布式发电(DG),如屋顶光伏板,或建设小型分散的可再生能源发电厂,如风能或光伏农场。本文的目的是研究高光伏和风渗透到电网的影响。为了解决这些影响,在IEEE提供的一个测试系统上进行了一项综合研究,该测试系统使用Etap软件对DG发电厂与33kV配电网络的集成进行了建模。建立了三个层次的整合模型,以反映DG电厂逐步渗透的影响,假设了6种情景,并进行了两种类型的测试来研究它们对电网的影响;故障水平和频率暂态稳定分别在每个渗透水平上进行。此外,为了检验电网在极端天气条件下的性能,我们假设了几个事件来模拟可再生能源发电的间歇性特性。所得结果表明,电网在渗透率低于30%时表现良好,而更高水平的光伏和风能渗透率需要电网方面进一步关注和修改。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of PV and wind penetration into a distribution network using Etap
According to IRENA the number of countries adopted a target to ratify the renewable energy on their electricity grid went from 43 countries to 164 over a course of 10 years only. These targets which will increase renewable energy share on the electricity grid, implies the use of Distributed Generation (DG) like roof-top PV panels or the construction of small scale dispersed renewable-based power plant like wind or PV farms. The aim of this paper is to study the impacts of high PV and wind penetration into the grid. To address these impacts, a comprehensive study performed on a test system provided by IEEE to model the integration of DG plants into a 33kV distribution network using Etap software. Three levels of integration were modeled to reflect the impact of DG plants penetration on gradual basis, 6 scenarios have been assumed and two types of tests have been carried out to investigate their impact on the grid; fault level and frequency transient stability were performed individually at each level of penetration. Additionally, in order to examine the grid performance during extreme weather conditions, several events have been assumed to model the intermittent properties of renewable energy generation. The obtained results showed very good performance of the grid for penetration less than 30% while higher level of PV and wind penetration requires further attention and modification on the grid side.
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