IEEE Transactions on Power Systems · 2014 · 26 citations · 11 references
Electrical EngineeringReliability EngineeringEngineeringSmart GridPower System ReliabilityEntropyFault AnalysisFidvr PhenomenonComputer EngineeringSystems EngineeringDelayed Voltage RecoveryVoltage RecoveryCircuit ReliabilityPower System ProtectionQuantitative MeasurePower System TransientPower SystemsPower System Analysis
In this paper, we introduce a novel entropy-based metric to characterize the fault-induced delayed voltage recovery (FIDVR) phenomenon. In particular, we make use of Kullback-Leibler (KL) divergence to determine both the rate and the level of voltage recovery following a fault or disturbance. The computation of the entropy-based measure relies on voltage time-series data and is independent of the underlying system model used to generate the voltage time-series. The proposed measure provides quantitative information about the degree of WECC voltage performance violation for FIDVR phenomenon. The quantitative measure for violation allows one to compare the voltage responses of different buses to various contingencies and to rank order them, based on the degree of violation.
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A Mathematical Theory of Communication
Claude E. Shannon · Bell System Technical Journal · 1948 · 78.4K citations
On Information and Sufficiency
S. Kullback, R. A. Leibler · The Annals of Mathematical Statistics · 1951 · 19.5K citations · Full text
Transient stability test systems for direct stability methods
Vijay Vittal, D. J. Martin, Rongming Chu et al. · IEEE Transactions on Power Systems · 1992 · 208 citations