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Unified algorithm of single-phase active AC-DC converters and its applications

单相有源AC-DC变换器的统一算法及其应用(英文)
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摘要 This paper discusses a novel boost single-phase active AC-DC converters, named low-end semi-controlled bridge AC-DC converter. By analysis, its topology and principle can be derived from the conventional single-phase power factor corrector ( PFC). But it has also some differences, such as power device positions, inductor type, input voltage waveform detection and induction current detection, so its design is also different. The converter is implemented by employing two current detection approaches, i.e., current transformer detection and shunt resistor detection. Consequently, it can provide a steady DC output voltage with a low voltage ripple, approximately unitary input power factor and 2.5 kW output power. The experimental results show validity of the theoretical analysis. This paper discusses a novel boost single-phase active AC-DC converters, named low-end semi-controlled bridge AC-DC converter. By analysis, its topology and principle can be derived from the conventional single-phase power factor corrector ( PFC). But it has also some differences, such as power device positions, inductor type, input voltage waveform detection and induction current detection, so its design is also different. The converter is implemented by employing two current detection approaches, i.e., current transformer detection and shunt resistor detection. Consequently, it can provide a steady DC output voltage with a low voltage ripple, approximately unitary input power factor and 2.5 kW output power. The experimental results show validity of the theoretical analysis.
出处 《Journal of Shanghai University(English Edition)》 CAS 2006年第2期151-153,共3页 上海大学学报(英文版)
基金 ProjectsupportedbyNationalNaturalScienceFoundationofChina(GrantNo.50377025),andScienceFoundationofShanghaiMunicipalCommissionofScienceandTechnology(GrantNo.03DZ14014)
关键词 single-phase active AC-DC converter low-end semi-controlled bridge power factor correction (PFC). single-phase active AC-DC converter, low-end semi-controlled bridge, power factor correction (PFC).
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