Oscillation modal analysis from ambient synchrophasor data using distributed frequency domain optimization

Power Systems, IEEE Transactions(2013)

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摘要
This paper provides a distributed frequency domain algorithm for real-time modal estimation of large power systems using ambient synchrophasor data. By dividing the computation between a supervisory central computer and local optimizations at the substation level, the algorithm efficiently estimates multiple dominant mode frequencies, damping ratios and mode shapes from wide-area power system measurements. The algorithm, called distributed frequency domain optimization, is tested on known test systems and archived real power system data from eastern and western power systems.
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关键词
damping ratios,optimisation,synchrophasors,large power systems,ambient synchrophasor data,real-time modal estimation,frequency-domain analysis,modal analysis,phasor measurement,oscillations,multiple dominant mode frequency estimation,supervisory central computer,distributed frequency domain optimization,oscillation modal analysis,frequency domain optimization,electromechanicalmode identification,power system small signal stability,mode shapes,wide-area power system measurements,electromechanical mode identification,algorithm design and analysis,optimization,stability analysis,distributed databases,frequency domain analysis
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