Title :
Robust state estimation based on projection statistics [of power systems]
Author :
Mili, L. ; Cheniae, M.G. ; Vichare, N.S. ; Rousseeuw, P.J.
Author_Institution :
Dept. of Electr. Eng., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
fDate :
5/1/1996 12:00:00 AM
Abstract :
This paper describes a fast and robust method for identifying the leverage points of a linearized power system state estimation model. These are measurements whose projections on the space spanned by the row vectors of the weighted Jacobian matrix, the so-called factor space, do not follow the pattern of the bulk of the point cloud. In other words, their projections are outliers in the factor space. The proposed method is implemented through a new version of the projection algorithm that accounts for the sparsity of the Jacobian matrix. It assigns to each data point a projection statistic defined as the maximum of the standardized projections of the point cloud on some directions passing through the origin. Based on these projection statistics, a robustly weighted Schweppe-type GM-estimator is defined, which can be computed by a reweighted least squares algorithm. The computational efficiency and the robustness of the method are demonstrated on the IEEE-14 bus and the 118-bus systems
Keywords :
Jacobian matrices; least squares approximations; linearisation techniques; power system analysis computing; power system state estimation; sparse matrices; statistical analysis; IEEE-118 bus system; IEEE-14 bus system; computational efficiency; computer simulation; factor space; fast robust method; leverage points; linearized power system state estimation model; matrix sparsity; point cloud bulk pattern; projection algorithm; reweighted least squares algorithm; robustly weighted Schweppe-type GM-estimator; row vectors; weighted Jacobian matrix; Clouds; Computational efficiency; Jacobian matrices; Least squares methods; Power system measurements; Power system modeling; Projection algorithms; Robustness; State estimation; Statistics;
Journal_Title :
Power Systems, IEEE Transactions on