Investigation on transient stability of an industrial network and relevant impact on over-current protection performance

B. Keyvani, H. Nafisi, H. Lesani
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引用次数: 4

Abstract

System protection performance and transient stability of the electrical network are significantly affected by each other. The larger the time delay in which protection detects and clears the fault, the more likely loss of synchronism will be, especially in the networks with internal generation. Over current protection schemes inherently operates with considerable delay. Moreover, system dynamic oscillations discernibly aggravate their performance. Therefore utilizing them as main protection is controversial and even abortive in order to maintain system stability. In this paper, transient stability of a real industrial network is studied. The study is investigated using critical clearing time (CCT) criterion for different network configuration. Equipments such as generators and motors are modeled and simulated by DIgSILENT software. In addition, the operation of over current relays adjusted by conventional methods is investigated dynamically and its performance is examined under different network configurations.
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工业电网暂态稳定性及其对过流保护性能影响的研究
系统保护性能与电网暂态稳定是相互影响的重要因素。保护检测和清除故障的时间延迟越大,丢失同步的可能性越大,特别是在内部产生的网络中。电流过大的保护方案固有地存在相当大的延迟。此外,系统的动态振荡明显地加剧了它们的性能。因此,为了保持系统的稳定性,利用它们作为主要保护是有争议的,甚至是失败的。本文研究了实际工业网络的暂态稳定性问题。采用临界清除时间(CCT)准则对不同的网络配置进行了研究。利用DIgSILENT软件对发电机、电机等设备进行了建模和仿真。此外,还动态研究了采用常规方法调整过电流继电器的运行情况,并对其在不同网络配置下的性能进行了测试。
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