DocumentCode
1329581
Title
Decision Trees Using Synchronized Phasor Measurements for Wide-Area Response-Based Control
Author
Gao, Qun ; Rovnyak, Steven M.
Author_Institution
Midwest Indep. Transm. Syst. Operator (MISO), Carmel, IN, USA
Volume
26
Issue
2
fYear
2011
fDate
5/1/2011 12:00:00 AM
Firstpage
855
Lastpage
861
Abstract
This paper proposes using phasor measurement unit (PMU) data to trigger one-shot control in response to loss of synchronism detection. Decision trees (DTs) are trained to associate voltage magnitude and angle measurements with loss of synchronism. Different approaches to the DT construction process are illustrated in an early section of the paper by restricting the input vector to only two elements. Response-based control is obtained by triggering one-shot control the first time the DT classifies measurements as “Unstable”. The same combination of one-shot controls is applied to any event the first time the DT outputs “Unstable”. The method is demonstrated on a 176-bus reduced-order model of the western U.S. interconnection. An effective one-shot control consists of a combination of fast power changes on four buses. This control is similar to 500-MW fast power increases on two HVDC interties and it reduces angle differences in the AC network.
Keywords
HVDC power transmission; decision trees; power system dynamic stability; power system measurement; reduced order systems; synchronisation; voltage measurement; 176-bus reduced order model; AC network; HVDC; angle measurement; decision tree construction; one shot control; phasor measurement unit; power system dynamic stability; synchronism detection; synchronized phasor measurement; voltage magnitude measurement; western US interconnection; wide area response-based control; Circuit faults; Generators; HVDC transmission; Phasor measurement units; Power system stability; Stability analysis; Training; Angle stability; decision trees; one-shot control; pattern recognition; phasor measurement units; power system dynamic stability; power system transient stability; response-based control; wide-area control;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2010.2067229
Filename
5580102
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