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Generalized instantaneous reactive power theory for three-phase power systems
IEEE Transactions on Instrumentation and Measurement · 1996 · Vol. 45(1) · pp. 293–297
Fang Zheng Peng✉(University of Tennessee at Knoxville)Jih‐Sheng Lai(Oak Ridge National Laboratory)
Abstract
A generalized theory of instantaneous reactive power for three-phase power systems is proposed in this paper. This theory gives a generalized definition of instantaneous reactive power, which is valid for sinusoidal or nonsinusoidal, balanced or unbalanced, three-phase power systems with or without zero-sequence currents and/or voltages. The properties and physical meanings of the newly defined instantaneous reactive power are discussed in detail. A three-phase harmonic distorted power system with zero-sequence components is then used as an example to show reactive power measurement and compensation using the proposed theory.
Power Quality and HarmonicsPower System Optimization and StabilityMagnetic Properties and ApplicationsAC powerVolt-ampere reactiveVoltage optimisationSymmetrical componentsControl theory (sociology)HarmonicPower (physics)Three-phasePower factorSwitched-mode power supply
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References
Orthogonal decomposition of the currents in a 3-phase nonlinear asymmetrical circuit with a nonsinusoidal voltage source
IEEE Transactions on Instrumentation and Measurement · 1988 · 347 citations
Instantaneous Reactive Power Compensators Comprising Switching Devices without Energy Storage Components
IEEE Transactions on Industry Applications · 1984 · 3,359 citations
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