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Trapezoidal Variable Weights Regression Tracing Control of MCSR in Cascading Failures

机译:级联失效中MCSR的梯形变权回归跟踪控制

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A trapezoidal variable weights regression control algorithm was proposed to proportionately calculate and change the weights of all variables in the rolling time domain window while tracking sensitivity and robustness were available. The operation principle of magnetically controlled shunt reactor magnetic circuit was analysed, and the weighted extensional model in time-varying parameters logarithmic regression function was established considering the dynamic relationship between the nonlinear component and the external power system according to theory of trend extrapolation. A control strategy of variable weights to reflect their importance in system identification was proposed to optimise voltage stability control. The algorithm has no iteration which can save computing time and memory and increase control flexibility. Advanced Digital Power System Simulator (ADPSS) which was developed by China electric power research institute contains the controller model by programmed. Simulation results in cascading failures used in practical operation parameters in projects confirmed the effectiveness of the control algorithm.
机译:提出了一种梯形变权重回归控制算法,可以在跟踪时域灵敏度和鲁棒性较好的情况下,按比例计算和改变滚动时域窗口中所有变量的权重。分析了磁控并联电抗器磁路的工作原理,根据趋势外推理论,考虑了非线性分量与外部电力系统之间的动态关系,建立了时变参数对数回归函数的加权扩展模型。提出了一种可变权重的控制策略,以反映其在系统识别中的重要性,以优化电压稳定性控制。该算法没有迭代,可以节省计算时间和内存并增加控制灵活性。中国电力科学研究院开发的高级数字电源系统模拟器(ADPSS)包含通过编程编写的控制器模型。在项目实际操作参数中使用级联故障的仿真结果证实了该控制算法的有效性。

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