DocumentCode
1055746
Title
Power System Harmonic State Estimation and Observability Analysis via Sparsity Maximization
Author
Liao, Huaiwei
Author_Institution
Dept. of Electr. & Comput. Eng., Carnegie Mellon Univ., Pittsburgh, PA
Volume
22
Issue
1
fYear
2007
Firstpage
15
Lastpage
23
Abstract
Harmonic state estimation (HSE) is used to locate harmonic sources and estimate harmonic distributions in power transmission networks. When only a limited number of harmonic meters are available, existing HSE methods have limited effectiveness due to observability problems. This paper describes a new system-wide harmonic state estimator that can reliably identify harmonic sources using fewer meters than unknown state variables. Note there are only a small number of simultaneous harmonic sources among the suspicious buses. Traditional observability analysis is extended to general underdetermined estimation when considering the sparsity of state variables. It is shown that the underdetermined HSE can become observable with proper measurement arrangements by applying the sparsity of state variables. The HSE is formulated as a constrained sparsity maximization problem based on L1-norm minimization. It can be solved efficiently by an equivalent linear programming. Numerical experiments are conducted in the IEEE 14-bus power system to test the proposed method. The underdetermined system contains nine meters and 13 suspicious buses. The results show that the proposed sparsity maximization approach can reliably identify harmonic sources in the presence of measurement noises, model parameter deviations, and small nonzero injections
Keywords
linear programming; observability; power system harmonics; power system state estimation; transmission networks; IEEE 14-bus power system; L1-norm minimization; equivalent linear programming; harmonic distribution estimation; harmonic sources; harmonic state estimation; observability analysis; power system harmonics; power system state estimation; power transmission networks; sparsity maximization problem; Harmonic analysis; Linear programming; Observability; Power system harmonics; Power system measurements; Power system modeling; Power system reliability; Power transmission; State estimation; System testing; Harmonic pollution; meter placement; observability; power system harmonics; sparsity; sparsity representation; state estimation; underdetermined system; waveform distortion; wide-area measurements;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2006.887957
Filename
4077122
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