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Modeling and design of 700W digital average current mode controlled multiphase bidirectional DC-DC converter

机译:700W数字平均电流模式控制的多相双向DC-DC转换器的建模与设计

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Mathematical modeling and analysis of converters is an essential and critical phase in the design stage of the system. High current switching and inductor ripple causes electromagnetic interference in the system. Paralleling of the converters and smart switching control will reduce the stress on the converter switches. Substantial ripple reduction in the source and load current can be achieved by optimally choosing the transfer ratio. Multiphase technique increases the ripple frequency resulting in lesser filter requirements. A two phase bidirectional converter operating in continuous current conduction mode is modeled and digital average current mode control technique is proposed to regulate the output voltage. A 700 watt system is designed and the simulation and experimental results are presented.
机译:转换器的数学建模和分析是系统设计阶段中必不可少的关键阶段。高电流开关和电感器纹波会在系统中引起电磁干扰。转换器的并联和智能开关控制将减少转换器开关的压力。通过最佳选择传输比,可以大幅减少源极和负载电流中的纹波。多相技术增加了纹波频率,从而降低了对滤波器的要求。对工作在连续电流传导模式下的两相双向转换器进行建模,并提出了数字平均电流模式控制技术来调节输出电压。设计了一个700瓦的系统,并给出了仿真和实验结果。

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