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Comparison of methods for the perturbed trajectory prediction based on wide area measurements

机译:基于广域测量的扰动轨迹预测方法的比较

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With the wide use of phasor measurement unit (PMU) and Wide Area Measurement System (WAMS), the transient instability real time prediction has been one of hot issues in power systems. The perturbed rotor angle trajectory prediction is a key step for transient instability prediction. The curve fitting based perturbed trajectory extrapolation methods had been paid widely attention since they do not need the knowledge of the network topology, model and parameters of power system and do not need network equivalence. Only a few post-fault measurements are required. The existed methods, such as the polynomial model, the trigonometric function model, the auto-regressive model and the angular velocity prediction & integration based method, are overviewed in this paper respectively. The experimental simulations on both IEEE 39-bus system and China Southern Power Grid are done to test the effectiveness of these models. An analysis and comparison is presented in terms of the fault condition, the sampling period, the number of the required measurements and the forecasting accuracy. The numerical results show that the polynomial model based prediction method has best effects for perturbed rotor angle trajectory prediction in terms of stability, rapidity and accuracy.
机译:随着相量测量单元(PMU)和广域测量系统(WAMS)的广泛使用,瞬态不稳定性实时预测已成为电力系统中的热门问题之一。扰动转子角轨迹预测是瞬态不稳定性预测的关键步骤。基于曲线拟合的扰动轨迹外推方法由于不需要了解网络拓扑,电力系统的模型和参数,也不需要网络等价物,因此受到了广泛的关注。仅需要少量的故障后测量。分别综述了多项式模型,三角函数模型,自回归模型以及基于角速度预测与积分的方法。在IEEE 39总线系统和南方电网上均进行了实验仿真,以检验这些模型的有效性。根据故障条件,采样周期,所需测量的次数和预测准确性进行了分析和比较。数值结果表明,基于多项式模型的预测方法在稳定性,快速性和准确性方面对扰动的转子角轨迹预测具有最佳效果。

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