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A Fast Approximate Fault Simulation Method for Power Systems Contingency Selection

机译:电力系统应变选择的快速近似故障仿真方法

摘要

Anew contingency analysis method for contingency selection is proposed in this paper. In the method proposed, a fault is simulated by power injections to adjacent buses on the fault devices in a pre-fault system, and by essentially a non-iterative linear calculation to avoid recalculation of a Z-matrix or refactor of a Y-matrix. As more accurate load flow calculation is available by the method proposed than by the sensitivity approach, more reliable contingency selection is available, even though the computational speed of the method is a little slower than that of the method using the sensitivity approach. From the IEEE 30 bus example, it is found that the method is satisfactorily applied to the contingency selection from the view of both the accuracy and the computational speed. The error of the method is less than 1% in voltage and less than 1 degree in phase angle for most fault cases of the IEEE 30 bus system. The computational burden is less than 10% of that of P-Q decoupled load now method in most fault cases
机译:提出了一种新的偶发选择权分析方法。在提出的方法中,通过故障前系统中故障设备上相邻母线的功率注入,并通过本质上是非迭代线性计算来避免对Z矩阵的重新计算或对Y矩阵的重构,来模拟故障。 。由于与灵敏度方法相比,所提出的方法可以提供更准确的潮流计算,因此,即使方法的计算速度比采用灵敏度方法的方法慢一点,也可以进行更可靠的意外选择。从IEEE 30总线示例可以发现,从准确性和计算速度的角度来看,该方法已令人满意地应用于意外事件选择。对于IEEE 30总线系统的大多数故障情况,该方法的电压误差小于1%,相角误差小于1度。在大多数故障情况下,现在的计算负担不到P-Q解耦负载的10%

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