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Out-of-step protection enhancements

机译:失步保护增强

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Power systems are subjected to a wide range of small or larger disturbances during operating conditions and they are designed to survive disturbances caused by faults, loss of a large generator, or line switching. The power system typically adjusts to these disturbances and continues to operate satisfactorily and within the desired bounds of voltage and frequency. Multiple system disturbances, however, could cause loss of synchronism between interconnected power systems that lead to loss of generation and load, and sometimes to wide-area blackouts. To mitigate the effect of these disturbances, it is common practice to provide controls called special protection systems that aid in maintaining system stability. In addition, properly designed power systems include out-of-step (OOS) protection systems that detect loss of angular instability and perform controlled network islanding to preserve stability within smaller networks. In this paper, we describe the application philosophy of OOS protection systems in transmission systems and discuss recent enhancements in the design of out-of-step tripping (OST) and blocking protection functions that improve the security and reliability of the power system.
机译:电力系统在运行条件下会遭受各种较大或较小的干扰,它们的设计目的是承受由故障,大型发电机的损耗或线路切换引起的干扰。电力系统通常会针对这些干扰进行调整,并在令人满意的电压和频率范围内继续令人满意地运行。但是,多个系统的干扰可能会导致互连的电源系统之间失去同步性,从而导致发电和负载损失,有时还会导致广域停电。为了减轻这些干扰的影响,通常的做法是提供称为特殊保护系统的控件,以帮助维持系统的稳定性。此外,经过适当设计的电力系统包括失步(OOS)保护系统,该系统可以检测角度不稳定性的损失并执行受控的网络孤岛操作,以保持较小网络中的稳定性。在本文中,我们描述了OOS保护系统在输电系统中的应用原理,并讨论了失步跳闸(OST)和闭锁保护功能设计的最新改进,这些功能提高了电力系统的安全性和可靠性。

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