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Dynamic state estimation assisted posturing for generator out-of-step protection

机译:动态状态估计辅助姿态的发电机失步保护

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Protective relays used in power system today measure external signals to diagnose the internal state of the equipment they protect. Based on measurements of voltage, current, frequency at the bus, the decision is made whether the equipment is healthy or faulty. Due to advances in sensing and computing, it has become possible to use the external measurements to dynamically estimate the internal state of an equipment in real time, thus achieving better insight into its status. Motivated by this emerging paradigm, this paper proposes a dynamic state estimation (DSE)-enabled algorithm to improve protection functions for large synchronous generators during out-of-step conditions. The DSE module is developed using a phasor measurement unit (PMU)-assisted particle filter. The estimated electromechanical state (rotor angle) and voltage phase angle of the high voltage-side of the step-up transformer are used as inputs to detect the out-of-step (OOS) events. Initial results of numerical simulations conducted on a 10-machine, 39 bus test system demonstrate the feasibility of the proposed concept, and show the potential to monitor and supervise the conventional protection device from misoperations.
机译:今天,电力系统中使用的保护继电器测量外部信号,以诊断受保护设备的内部状态。根据总线上的电压,电流,频率的测量结果,确定设备是否正常运行。由于传感和计算技术的进步,使用外部测量来实时动态估计设备的内部状态成为可能,从而可以更好地了解其状态。受这种新兴范式的激励,本文提出了一种动态状态估计(DSE)支持的算法,以改进失步条件下大型同步发电机的保护功能。 DSE模块是使用相量测量单元(PMU)辅助的粒子滤波器开发的。估计的机电状态(转子角)和升压变压器高压侧的电压相位角用作检测失步(OOS)事件的输入。在10机39总线测试系统上进行的数值模拟的初步结果证明了所提出概念的可行性,并显示了监视和监督常规保护装置免受误操作的潜力。

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