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Minimum correction method for enforcing limits and equality constraints in state estimation based on orthogonal transformations

机译:基于正交变换的状态估计中限制极限和等式约束的最小校正方法

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摘要

A new method is presented for orthogonal transformation-based power system state estimation that enables enforcement of limits and equality constraints. The enforcing of constraints is based on minimization of the correction by which the unconstrained state estimate must be modified in order to satisfy all equality and inequality constraints. An estimation algorithm is developed which combines active set and interior point optimization methods in such a way, that positive features of both methods are retained. A self-scaling Givens rotation algorithm is proposed to perform elementary orthogonal transformations in unconstrained state estimation. This reduces the necessity of the underflow monitoring and re-scaling during the orthogonal transformation of the Jacobian matrix. The numerical results are presented demonstrating the efficiency of the algorithm.
机译:提出了一种用于基于正交变换的电力系统状态估计的新方法,该方法能够实施限制和相等约束。约束的执行基于最小化的校正,通过校正必须修改无约束的状态估计值,以满足所有相等和不相等的约束。开发了一种估计算法,该算法结合了活动集和内部点优化方法,从而保留了这两种方法的积极特征。提出了一种自缩放的吉文斯旋转算法,用于在无约束状态估计中执行基本正交变换。这减少了在雅可比矩阵的正交变换期间进行下溢监视和重新缩放的必要性。数值结果表明了算法的有效性。

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