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Sequence Components Based Three-Phase Power Flow Algorithm with Renewable Energy Resources for A Practical Application

机译:基于序列组件的三相电流算法,具有可再生能源的实际应用

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Load flow investigations form an essential prerequisite for power system studies. Existing load-flow techniques, particularly single phase solutions are well developed and streamlined for rapid solutions of very large networks. Conventionally balanced single phase load flow analysis is carried out and balanced model of power system is assumed. Three phase load flow solutions is a useful approach as system unbalance cannot be ignored due to un-transposed transmission lines and unbalance loading in power system. This paper deals with the three phase load flow investigations, which aims to find the optimal operation of National Transmission and Dispatch Company (NTDC), 32-Bus 500/220 kV primary Power System. Sequence components based Algorithm is presented for three-phase networks and is tested for IEEE 6-bus 14-Bus and NTDC 32-Bus practical test system. The performance of the system has been studied for different types of renewable energy resources such as solar and hydel generation units for practical scenarios. Comparison of results validates the potential strength of investigations.
机译:负荷流调查形成电力系统研究的必要先决条件。现有的负载流技术,特别是单相解决方案是良好的开发和简化的非常大网络的快速解决方案。传统地进行平衡的单相载荷分析,并假设电力系统的平衡模型。三相负荷流动解决方案是一种有用的方法,因为由于未转换的传输线和电力系统中的不平衡负载,因此不能忽略系统不平衡。本文涉及三相荷载流程,旨在找到国家传输和调度公司(NTDC),32公交500/220 kV主电力系统的最佳运行。基于序列分量的算法用于三相网络,用于IEEE 6总线14总线和NTDC 32总线实际测试系统测试。已经研究了该系统的性能,用于不同类型的可再生能源,如太阳能和水晶单位的实际情况。结果的比较验证了潜在的调查强度。

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