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Tests of distance relay performance on stable and unstable power swings reported using simulated data of the August 14th 2003 system disturbance

机译:使用2003年8月14日系统干扰的模拟数据报告了距离继电器在稳定和不稳定功率摆幅上的性能测试

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The electric power system maintains a dynamic and delicate balance between generation and load in normal operation condition. A disturbance, such as a sudden change of load, a power system fault, or a trip of a large generation unit, may break the balance, cause the oscillations among the generator rotor angles and force the generators to adjust to a new operating condition. The adjustment will not happen instantaneously due to the inertia of the generator prime movers. The oscillation will cause either stable and/or unstable power swings. During a power swing, the impedance trajectory seen by a distance relay may enter the fault detection zones and cause unwanted relay operation. During the Blackout on August 14th, 2003 in North America, stable and unstable power swings occurred and caused the operation of several distance relays. In 2007, Northeast Power Coordinating Council (NPCC) formed a joint team to start an investigation on the issue with the goal to improve the performance of distance protection in such events. This paper reports on distance relay testing that was performed by using simulated data of the blackout from NPCC's SS-38 working group. The simulations include both stable swings and unstable swings. The goal of these tests was to evaluate solutions which could be implemented to avoid unwanted distance relay operations for such events. The paper discusses the feasibilities and limitations of using load blinders to prevent relay operations during stable power swings. Several power swing blocking methods are discussed, and their advantages and disadvantages are compared. This paper describes the test procedures, and presents and discusses the test results. Relays were programmed for both mho and quadrilateral characteristics for the tests. Some recommendations and comments are made on the protection for the conditions of stable and unstable power swings.
机译:在正常运行条件下,电力系统可在发电量和负荷之间保持动态和精细的平衡。负载突然变化,电力系统故障或大型发电机跳闸等干扰可能会破坏平衡,导致发电机转子角之间产生振荡,并迫使发电机适应新的运行条件。由于发电机原动机的惯性,该调节不会立即发生。振荡将导致稳定和/或不稳定的功率摆幅。在功率摆幅期间,距离继电器看到的阻抗轨迹可能会进入故障检测区域并导致不必要的继电器操作。在2003年8月14日北美停电期间,出现了稳定和不稳定的功率波动,并导致了多个距离继电器的运行。 2007年,东北电力协调委员会(NPCC)成立了一个联合小组,对该问题进行调查,目的是提高此类事件中距离保护的性能。本文报告了通过使用NPCC SS-38工作组的停电模拟数据进行的距离继电器测试。仿真包括稳定摆动和不稳定摆动。这些测试的目的是评估可以实施的解决方案,以免发生此类事件而导致不必要的距离中继操作。本文讨论了在负载稳定波动期间使用负载盲板来防止继电器运行的可行性和局限性。讨论了几种功率摆幅闭锁方法,并比较了它们的优缺点。本文介绍了测试程序,并介绍和讨论了测试结果。继电器针对测试的mho和四边形特性进行了编程。针对保护稳定和不稳定的电源摆幅情况,提出了一些建议和意见。

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