Analysis and Experimental Evaluation of Symmetric and Asymmetric 18-Pulse Autotransformer Rectifier Topologies

Nagoya(2007)

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摘要
This paper presents the analysis and experimental evaluation of symmetric and asymmetric 18-pulse autotransformer rectifiers. Specifically, three symmetric topologies having the capability to feed from dual ac voltage networks-rated at 0.5 and 1 p.u., and three asymmetric topologies of minimum number of windings and kVA rating were considered. The evaluation assayed the voltage regulation, input power factor, input current THD, dc common-mode voltage, and power conversion efficiency, all obtained while operating at 400 and 800 Hz for both types of topologies, and additionally from 0.5 and 1 p.u. ac voltages for the symmetric topologies. The results obtained using 2 kW scaled-down prototypes show that the best symmetric topology is the one optimized to operate from 1 p.u. voltages, and the best asymmetric ones the topologies based on polygon autotransformers.
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autotransformers,harmonic distortion,network topology,rectifying circuits,transformer windings,thd,common-mode voltage,dual ac voltage networks,frequency 400 hz to 800 hz,polygon autotransformers,power 2 kw,power conversion efficiency,scaled-down prototypes,symmetric asymmetric pulse autotransformer rectifier topologies,symmetric topologies,voltage regulation,18-pulse rectifier,autotransformer rectifier,polygon autotransformer,conversion efficiency,circuit topology,power electronics,common mode voltage,voltage regulator,power factor,diodes,voltage,common mode
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