2002IEE Proceedings - Electric Power ApplicationsRequires access

Single-phase shunt active power filter with harmonic detection

M. Rukonuzzaman, M. Nakaoka

Open publisher page 34 citations

Abstract

An advanced active power filter for the compensation of instantaneous harmonic current components in nonlinear current loads is presented. A signal processing technique using an adaptive neural network algorithm is applied for the detection of harmonic components generated by nonlinear current loads and it can efficiently determine the instantaneous harmonic components in real time. The validity of this active filtering processing system to compensate current harmonics is substantiated by simulation results.

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What this paper is about

An advanced active power filter for the compensation of instantaneous harmonic current components in nonlinear current loads is presented. A signal processing technique using an adaptive neural network algorithm is applied for the detection of harmonic components generated by nonlinear current loads and it can efficiently determine the instantaneous harmonic components in real time. The validity of this active filtering processing system to compensate current harmonics is substantiated by simulation results.

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Available abstract

An advanced active power filter for the compensation of instantaneous harmonic current components in nonlinear current loads is presented. A signal processing technique using an adaptive neural network algorithm is applied for the detection of harmonic components generated by nonlinear current loads and it can efficiently determine the instantaneous harmonic components in real time. The validity of this active filtering processing system to compensate current harmonics is substantiated by simulation results.

Key concepts: Harmonics, Harmonic, Active filter, Compensation (psychology), Control theory (sociology), Electronic engineering, Nonlinear system, Adaptive filter

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