发电机欠磁保护与欠磁限制器配合防止变压器上电时发电机跳闸:阿萨鲁耶电厂案例

Mohammad Zaman Jelvian, Mohammad Jahani, G. Gharehpetian
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引用次数: 0

摘要

在Asaluyeh BOO电厂,在给Pars变电站500MVA变压器或主变压器的每台机组通电时,可能会对一个在役机组产生甩负荷(跳闸)。这种突然停电是由于电力变压器涌流在暂态模式下引起电网电压下降造成的。针对该区域电网低短路水平,以及电网和电厂机动引起的无功功率波动,有一台机组工作在欠激励区。最终,欠激励保护跳闸发电机和气体断路器(GCB),导致负载丢弃。本文通过故障分析、影响故障发生的因素以及在不同负荷水平下进行的动态试验来研究这一问题。利用MATLAB和DIgSILENT软件对系统进行仿真。根据仿真结果,分别提出了过磁保护(Ansi 40G)和过磁限制器(UEL)的正确设置,以防止机组意外停机及其对电网暂态的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination of Generator Underexcitation Protection with Underexcitation Limiter to Prevent Generator Tripping During Power Transformer Energization: Asaluyeh Power Plant Case
In Asaluyeh BOO power plant, during energizing the Pars substation 500MVA transformer or each unit of main transformer, it is possible to have a load rejection (tripping) for one of in-service units. This sudden outage is due to the grid voltage decrease during transient mode caused by power transformer inrush current. Regarding to the grid low short-circuit level in this region, and the reactive power fluctuations caused by grid and power plants maneuvers, one of the units is working in the underexcitation area. Eventually, the underexcitation protection trips the generator and Gas Circuit Breaker (GCB) and leads to load rejection. In this paper, this problem is investigated using fault analysis, factors affecting the faults occurrences and dynamic tests performed at different load levels. MATLAB and DIgSILENT software are used in order to simulate the system. Based on simulation results, correct settings for underexcitation protection (Ansi 40G) and Underexcitation Limiter (UEL) are respectively proposed, to prevent units unintended outage and their negative effects on grid transients.
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