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POWER SYSTEM TRANSIENT INSTABILITY DETECTION BASED ON WIDE AREA MEASUREMENT SYSTEM

机译:基于广域测量系统的电力系统瞬态不稳定检测

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The instability detection method of a power system by directly analyzing the transient response of the electric power system is not only useful for stopping the time domain simulation of system trajectory to reduce CPU time for preventive control program, but also can be used to trigger transient stability emergency control and system splitting based on wide area measurement system. Reliability, speediness and computational simplicity are of primary importance in developing online instability detection method. With regard to these requirements, a novel method for instability detection based on generator angle and angular velocities is proposed in this paper. System instability or out-of-step condition is detected by the characteristics concave or convex of the critical machine trajectory of the post-fault system. The generalized transient energy function method is applied to analysis reliability and robustness of the proposed method. The proposed method was successfully tested on several different power systems varying in size from Single-Machine-Infinite-Bus system and IEEE 50 generator systems. The method is shown to be a potential tool for initiating online emergency control.
机译:通过直接分析电力系统的瞬态响应的电力系统的不稳定检测方法不仅用于停止系统轨迹的时域仿真,以减少预防控制程序的CPU时间,而且可以用于触发瞬态稳定性基于宽区域测量系统的应急控制与系统分裂。可靠性,速度和计算简单性在开发在线不稳定检测方法方面具有重要意义。关于这些要求,本文提出了一种基于发电机角和角速度的不稳定性检测的新方法。系统不稳定性或逐步条件由故障系统的临界机轨迹的凹入或凸面检测到。广义瞬态能量函数方法应用于提出方法的分析可靠性和鲁棒性。所提出的方法在从单机 - 无限总线系统和IEEE 50发电机系统的大小上变化的几种不同的电源系统上成功地测试。该方法被证明是用于启动在线紧急控制的潜在工具。

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