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Symmetrical and unsymmetrical faults analysis: Using Nigeria 330-KV grid as case study

机译:对称和非对称故障分析:使用尼日利亚330-kV网格作为案例研究

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When a short-circuit occurs in a power system, the magnitude of the fault currents, which is very high compared to the steady state current that flows in the power system, is determined by the reactance of the power system equipment (and the reactance of the ground if ground is involved). It is essential that symmetrical and unsymmetrical analysis of the power system network be undertaken to determine the magnitude of these fault currents and fault MVA (Megavolt-Ampere) so as to select adequate ratings of the power system protective devices - such as circuit breakers, relays and fuses. Otherwise, these protective devices will not operate properly in the event of faults thereby causing considerable damage to life and equipment. In this paper, the Nigeria 330KV network, 32 bus system is considered using relevant data which was obtained from the Nigerian National Integrated Power Project (NIPP) inhouse Grid Study Team Report, and the Transmission Company of Nigeria (TCN). Power System toolbox in MATLAB was used to carry out the simulation analysis. Fault impedance was set to j*0.1, and the various kinds of faults were simulated at bus 32 (Calabar) and bus 6 (Ayede). Base MVA of 100 MVA and Base KV of 330 KV were used. The results obtained show that symmetrical three phase fault is the most severe kind at the transmission lines, while for faults occurring very close to the generating station or synchronous generator, single line to ground fault is the most severe.
机译:当短路发生在电力系统中时,与在电力系统中流动的稳态电流相比非常高的故障电流的大小由电力系统设备的电抗(以及电抗如果涉及地面,则地面)。本必须对电力系统网络进行对称和不对称分析,以确定这些故障电流和故障MVA(MEGAVOLT-AMPERE)的幅度,以便选择电力系统保护装置的充分额定值 - 例如断路器,继电器和保险丝。否则,这些保护装置在故障发生故障时不会适当运行,从而导致生命和设备造成相当大的损坏。在本文中,尼日利亚330KV网络,32个总线系统使用来自尼日利亚国家综合电力项目(NIPP)Inhounh Grid研究团队报告的相关数据,以及尼日利亚的传输公司(TCN)。 MATLAB中的电源系统工具箱用于执行模拟分析。故障阻抗设置为J * 0.1,并且在总线32(Calabar)和总线6(Ayede)中模拟各种故障。使用100mVA的基础MVA和330kV的基础KV。得到的结果表明,对称的三相故障是传输线中最严重的类型,而用于非常靠近发电站或同步发电机的故障,单线到接地故障是最严重的。

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