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Power Factor Correction Rectifier with a Variable Frequency Voltage Source in Vehicular Application 被引量:1

Power Factor Correction Rectifier with a Variable Frequency Voltage Source in Vehicular Application
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摘要 This paper presents a PFCVF (Power Factor Correction) rectifier that uses a variable frequency source for alternators for electric and hybrid vehicles application. In such application, the frequency of the signal in the alternator changes according to the vehicle speed, more over the loading effect on the alternator introduces harmonic currents and increases the alternator apparent power requirements. To overcome these problems and aiming more stability and better design of the alternator, a new third harmonic injection technique is proposed. This technique allows to preserve a good THD (Total Harmonic Distortion) of the input source at any frequency and to decrease losses in semiconductors switches, thereby allowing more stability and reducing the apparent power requirements. A comparative study between the standard and the new technique is made and highlights the effectiveness of the new design. A detailed analysis of the proposed topology is presented and simulations as well as experimental results are shown. This paper presents a PFCVF (Power Factor Correction) rectifier that uses a variable frequency source for alternators for electric and hybrid vehicles application. In such application, the frequency of the signal in the alternator changes according to the vehicle speed, more over the loading effect on the alternator introduces harmonic currents and increases the alternator apparent power requirements. To overcome these problems and aiming more stability and better design of the alternator, a new third harmonic injection technique is proposed. This technique allows to preserve a good THD (Total Harmonic Distortion) of the input source at any frequency and to decrease losses in semiconductors switches, thereby allowing more stability and reducing the apparent power requirements. A comparative study between the standard and the new technique is made and highlights the effectiveness of the new design. A detailed analysis of the proposed topology is presented and simulations as well as experimental results are shown.
出处 《Intelligent Control and Automation》 2014年第1期1-11,共11页 智能控制与自动化(英文)
关键词 ASYNCHRONOUS Machine Control-Oriented Vector of Rotor Flux PWM BOOST Converter HARMONIC Injection Power Factor Correction THREE-PHASE RECTIFIER JUNCTION Temperature Asynchronous Machine Control-Oriented Vector of Rotor Flux PWM Boost Converter Harmonic Injection Power Factor Correction Three-Phase Rectifier Junction Temperature
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