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首页> 外文期刊>IEEE Transactions on Power Delivery >Fault Current Contribution From Synchronous Machine and Inverter Based Distributed Generators
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Fault Current Contribution From Synchronous Machine and Inverter Based Distributed Generators

机译:基于同步电机和逆变器的分布式发电机的故障电流贡献

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摘要

There are advantages of installing distributed generation (DG) in distribution systems: for example, improving reliability, mitigating voltage sags, unloading subtransmission and transmission system, and sometimes utilizing renewables. All of these factors have resulted in an increase in the use of DGs. However, the increase of fault currents in power systems is a consequence of the appearance of new generation sources. Some operating and planning limitations may be imposed by the resulting fault currents. This paper discusses a model of inverter based DGs which can be used to analyze the dynamic performance of power systems in the presence of DGs. In a style similar to protective relaying analysis, three-dimensional plots are used to depict the behavior of system reactance (X) and resistance (R) versus time. These plots depict operating parameters in relation to zones of protection, and this information is useful for the coordination of protection systems in the presence of DG
机译:在配电系统中安装分布式发电(DG)有很多优点:例如,提高可靠性,减轻电压骤降,减轻子输电和输电系统的负荷,有时还使用可再生能源。所有这些因素导致DG的使用增加。但是,电力系统中故障电流的增加是新一代电源出现的结果。产生的故障电流可能会施加一些操作和计划上的限制。本文讨论了基于逆变器的DG的模型,该模型可用于分析存在DG的电力系统的动态性能。以类似于继电保护分析的方式,使用三维图来描绘系统电抗(X)和电阻(R)与时间的关系。这些图描述了与保护区域有关的操作参数,该信息对于存在危险品时对保护系统的协调很有用。

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