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State Estimation of Power System Considering Network Parameter Uncertainty Based on Parametric Interval Linear Systems

机译:基于参数区间线性系统的考虑网络参数不确定性的电力系统状态估计

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摘要

This paper addresses the state estimation of a power system whose network parameters are known to be within certain tolerance bounds. The power system is assumed to be fully observable by having enough phasor measurement units installed. Using synchronized phasor measurement data and state variables expressed in rectangular forms, the state estimation under the transmission line parameter uncertainties is formulated based on the weight least square criterion as a parametric interval linear system of equations. The solutions are obtained as interval numbers representing the outer bound of state variables. The proposed method is also extended to a power system with mixed phasor and conventional power measurements. A technique based on affine arithmetic for converting state variable into polar form is also presented. The proposed method has been implemented using MATLAB and INTLAB toolbox and applied to some IEEE test systems. The numerical experiment results indicate that, in shorter computation time, the proposed algorithm can find the outer bounds that are close to those computed by performing Monte Carlo simulations or by solving constrained nonlinear optimization problems.
机译:本文讨论了电力系统的状态估计,该系统的网络参数已知在一定的公差范围内。通过安装足够的相量测量单元,可以假定电力系统是完全可观察的。使用同步相量测量数据和以矩形形式表示的状态变量,基于最小二乘准则将传输线参数不确定性下的状态估计公式化为参数区间线性方程组。获得的解决方案是代表状态变量外部界限的区间数。所提出的方法还扩展到具有混合相量和常规功率测量的电力系统。还提出了一种基于仿射算法将状态变量转换为极坐标形式的技术。所提出的方法已使用MATLAB和INTLAB工具箱实现,并已应用于某些IEEE测试系统。数值实验结果表明,该算法在较短的计算时间内可以找到与通过执行蒙特卡洛模拟或通过解决约束非线性优化问题所计算出的边界更接近的边界。

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