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Analysis of confidence bounds in power system state estimation with uncertainty in both measurements and parameters

机译:在测量和参数不确定的情况下分析电力系统状态估计的置信范围

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摘要

A method for uncertainty analysis in power system state estimation is proposed. The uncertainty is expressed in both measurements and network parameters. Uncertainties in both measurements and parameters are known and bounded. The problem is formulated as a constrained non-linear optimization problem. To find the tightest possible upper and lower bounds of any state variable, the problem is solved by sequential quadratic programming (SQP) techniques. When applied to the 6-bus, IEEE 14-bus and IEEE 30-bus networks, the proposed method shows reliability and accuracy in estimating the uncertainty bounds in power system state estimation. In addition, assessment of time performance is carried out to demonstrate that the proposed method is suitable for either an on-line or an off-line application.
机译:提出了一种用于电力系统状态估计的不确定性分析方法。测量和网络参数均表示不确定性。测量和参数的不确定性是已知的并且是有界的。该问题被公式化为约束非线性优化问题。为了找到任何状态变量的最严格的上限和下限,可通过顺序二次编程(SQP)技术解决该问题。当应用于6总线,IEEE 14总线和IEEE 30总线网络时,所提出的方法在估计电力系统状态估计中的不确定性边界时显示出可靠性和准确性。此外,对时间性能的评估表明该方法适用于在线或离线应用。

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