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Research on wound field doubly salient generator with serial compensation capacitors

机译:串联补偿电容器绕线场双凸极发生器的研究

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In this paper, the 12/8-pole wound field doubly salient generator (WFDSG) equipped with the full bridge rectifier (FBR) is adopted. The maximum power generated by WFDSG in FBR topology is hampered by the armature current commutation overlap under a certain speed. To improve the power density of WFDSG in FBR, FBR with serial compensation capacitors topology is proposed. The influences of the serial capacitors' capacitance on the generation process of WFDSG system are studied in detail. The simulation waveforms under various serial capacitors are obtained and interpreted. The output voltage versus load current and output power versus load current characteristics with various serial capacitors are obtained to instruct the selection of the serial capacitors under different operation situations. The simulation results indicate that the maximum output power of WFDSG will increase distinguishingly and the output voltage regulating rate declines dramatically when the serial capacitors are chosen appropriately compared with FBR topology under the identical circumstances. Therefore, the FBR with serial compensation capacitors, which boosts the maximum output power and ameliorates the output voltage regulating rate, is a promising option for WFDSG generation system application.
机译:本文采用装有全桥整流器(FBR)的12/8极绕线磁场双凸极发电机(WFDSG)。在一定速度下,电枢电流换向重叠会阻碍WFDSG在FBR拓扑中产生的最大功率。为了提高WFDSG在FBR中的功率密度,提出了具有串联补偿电容器拓扑的FBR。详细研究了串联电容器电容对WFDSG系统生成过程的影响。获得并解释了各种串联电容器下的仿真波形。获得了各种串联电容器的输出电压与负载电流的关系以及输出功率与负载电流的关系,以指示在不同工作情况下如何选择串联电容器。仿真结果表明,WFDSG的最大输出功率将增加区别地与当串行电容器适当选择与下相同的情况FBR拓扑相比,输出电压调整率显着下降。因此,带有串联补偿电容器的FBR可以提高WFDSG发电系统的应用前景,可提高最大输出功率并改善输出电压调节率。

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