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Adaptive concept of controlled islanding in power systems for wide-area out-of-step prediction of synchronous generators based on adaptive tripping index

机译:基于自适应跳闸指标的同步发电机广域失步预测的电力系统受控孤岛自适应概念

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摘要

Here, based on wide-area measurement systems (WAMS), an adaptive tripping index (TI) is proposed for online prediction of tripping signals with respect to wide-area out-of-step (WAOOS) protection of synchronous generators. The proposed TI included two different equations consisting of a straight line for unstable inter-area oscillations and a sinusoidal line for WAOOS transient instability. For online identification of coherent generators with respect to inter-area oscillations, based on evaluating the correlation coefficients between generator behaviours, an index is proposed from which the global tripping signals (GTS) are calculated. The GTS consist of the rate of change of inter-area rotor angle oscillation between two oscillating areas in the centre of inertia frame. Actually, the proposed scheme is an adaptive and online index from which the critical inter-area angle is adjusted individually by evaluating GTS at each sampling time gathered from the WAMS data. The proposed strategy is implemented on an IEEE 39-bus test system and its performance is investigated by simulating typical scenarios during time-domain simulations. The results show the effectiveness of the proposed scheme for fast prediction of WAOOS protection in real-time environment.
机译:在此,基于广域测量系统(WAMS),针对同步发电机的广域失步(WAOOS)保护,提出了一种用于脱扣信号在线预测的自适应脱扣指数(TI)。拟议的TI包括两个不同的方程,包括用于区域间不稳定振荡​​的直线和用于WAOOS瞬态不稳定性的正弦曲线。为了针对区域间振荡在线识别相干发电机,在评估发电机性能之间的相关系数的基础上,提出了一个指标,据此可以计算出整体跳闸信号(GTS)。 GTS由惯性中心的两个振动区域之间的区域间转子角振动的变化率组成。实际上,所提出的方案是一种自适应的在线指标,通过在每个WAMS数据采集的采样时间评估GTS,可以分别对临界区域间角度进行调整。所提出的策略在IEEE 39总线测试系统上实现,并且通过在时域仿真过程中模拟典型场景来研究其性能。结果表明,所提方案在实时环境下快速预测WAOOS保护的有效性。

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