2006Unpublished venueRequires access

Performance Comparison of Various Passive Harmonic Filters for Adjustable Speed Drives

Ahmet M. Hava, Hazem Zubi

Open publisher page 7 citations

Abstract

This paper presents the performance comparison of various passive harmonic filters for three-phase diode rectifier front-end type adjustable speed drives. The comparison involves the input current total harmonic distortion, input power factor, rectifier voltage regulation, line voltage unbalance sensitivity, energy efficiency, size, and cost. Parallel/series harmonic resonance problem related issues are addressed and unbalanced operation performance investigated. The study is based on analysis and computer simulations, and the results are verified by laboratory experiments.

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What this paper is about

This paper presents the performance comparison of various passive harmonic filters for three-phase diode rectifier front-end type adjustable speed drives. The comparison involves the input current total harmonic distortion, input power factor, rectifier voltage regulation, line voltage unbalance sensitivity, energy efficiency, size, and cost. Parallel/series harmonic resonance problem related issues are addressed and unbalanced operation performance investigated. The study is based on analysis and computer simulations, and the results are verified by laboratory experiments.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents the performance comparison of various passive harmonic filters for three-phase diode rectifier front-end type adjustable speed drives. The comparison involves the input current total harmonic distortion, input power factor, rectifier voltage regulation, line voltage unbalance sensitivity, energy efficiency, size, and cost. Parallel/series harmonic resonance problem related issues are addressed and unbalanced operation performance investigated. The study is based on analysis and computer simulations, and the results are verified by laboratory experiments.

Key concepts: Total harmonic distortion, Rectifier (neural networks), Harmonic, Power factor, Voltage, Sensitivity (control systems), Harmonic analysis, Electronic engineering

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