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Reactive power operability of distributed energy resources for voltage stability of distribution networks

机译:分布式能源的无功可操作性,用于配电网的电压稳定性

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摘要

The penetration level of distributed energy resources (DERs) is increasing and has significant impact on the voltage stability of distribution networks. Based on the various types of DERs with distinct reactive power characteristics (RPC), their different contributions to the system voltage stability require classification. Firstly, the features of DERs are reviewed and classified based on their RPC, to investigate different distributed generation technologies for reactive power support in distribution networks. Then, the concept of a relative available transmission capacity index (RATCI), which is based on power transfer margin of the power-voltage curve considering the non-negligible distribution network resistance, is proposed to quantify and evaluate the voltage stability by integrating DERs with the defined reactive power types. Case studies have been conducted for an IEEE 33-bus distribution network to calculate the system RATCI for the mixed integration of DERs. Results show that the multi-type and multi-locational integration of DERs can improve the voltage stability of a distribution network.
机译:分布式能源(DER)的渗透水平正在提高,并且对配电网络的电压稳定性有重大影响。基于具有不同无功功率特性(RPC)的各种类型的DER,需要对它们对系统电压稳定性的不同贡献进行分类。首先,基于DER的RPC对DER的功能进行了回顾和分类,以研究用于配电网中无功功率支持的各种分布式发电技术。然后,提出了一个相对可用输电容量指数(RATCI)的概念,该概念基于考虑了不可忽略的配电网电阻的电源电压曲线的输电裕度,通过将DER与定义的无功功率类型。已针对IEEE 33总线配电网络进行了案例研究,以计算用于DER混合集成的系统RATCI。结果表明,DERs的多类型,多位置集成可以提高配电网络的电压稳定性。

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