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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Transmission line short circuit analysis by impedance matrix method
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Transmission line short circuit analysis by impedance matrix method

机译:传输线路短路分析阻抗矩阵法

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摘要

Fault analysis is the process of determining the magnitude of fault voltage and current during the occurrence of different types of fault in electrical power system. Transmission line fault analysis is usually done for both symmetrical and unsymmetrical faults. Symmetrical faults are called three-phase balance fault while unsymmetrical faults include: single line-to-ground, line-to-line, and double line-to-ground faults. In this research, bus impedance matrix method for fault analysis is presented. Bus impedance matrix approach has several advantages over Thevenin’s equivalent method and other conventional approaches. This is because the off-diagonal elements represent the transfer impedance of the power system network and helps in calculating the branch fault currents during a fault. Analytical and simulation approaches on a single line-to-ground fault on 3-bus power system network under bolted fault condition were used for the study. Both methods were compared and result showed negligible deviation of 0.02% on the average. The fault currents under bolted condition for the single line-to-ground fault were found to be 4. 7244p.u while the bus voltage is 0. 4095p.u for buses 1 and 2 respectively and 0. 00p.u for bus 3 since the fault occurred at this bus. Therefore, there is no need of burdensomely connecting the entire three sequence network during fault analysis in electrical power system.
机译:故障分析是在电力系统中不同类型的故障发生过程中确定故障电压和电流幅度的过程。传输线故障分析通常用于对称和不对称的故障。对称断层称为三相余额故障,而无对称故障包括:单线到地,线到线和双线到地面故障。在本研究中,提出了用于故障分析的总线阻抗矩阵方法。总线阻抗矩阵方法具有与Visumin的等效方法和其他传统方法的几个优势。这是因为非对角线元件表示电力系统网络的传输阻抗,并有助于在故障期间计算分支故障电流。采用螺栓故障条件下的3母电源系统网络上单线到地面故障的分析和仿真方法进行了研究。比较了两种方法,结果显示出可忽略的偏差为0.02%。发现单线到地故障的螺栓状况下的故障电流为4. 7244p.u,而总线电压分别为0.4095p.u,分别为3095p.u,分别为0. 00p.u以来故障发生在这个公共汽车上。因此,在电力系统的故障分析中,不需要沉重地连接整个三个序列网络。

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