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Improvement of the Dynamic Performance of a Multiphase Current Controlled Buck Converter using an Auxiliary Synchronous Buck Converter as an Additional Energy Path

机译:使用辅助同步降压转换器作为附加能量路径的多相电流控制降压转换器的动态性能改善

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摘要

This work is related to the output impedance improvement of a Multiphase Buck converter with Peak Current Mode Control (PCMC) by means of introducing an additional power path that virtually increases the output capacitance during transients. Various solutions that can be employed to improve the dynamic behavior of the converter system exist, but nearly all solutions are developed for a Single Phase Buck converter with Voltage Mode Control (VMC), while in the VRM applications, due to the high currents, the system is usually implemented as a Multiphase Buck Converter with Current Mode Control. The additional energy path, as presented here, is introduced with the Output Impedance Correction Circuit (OICC) based on the Controlled Current Source (CCS). The OICC is used to inject or extract a current n-1 times larger than the output capacitor current, thus virtually increasing n times the value of the output capacitance during the transients. Furthermore, this work extends the OICC concept to a Multiphase Buck Converter system while comparing proposed solution with the system that has n times bigger output capacitor. In addition, the OICC is implemented as a Synchronous Buck Converter with PCMC, thus reducing its influence on the system efficiency.
机译:这项工作与引入峰值电流模式控制(PCMC)的多相降压转换器的输出阻抗改善有关,方法是引入一条额外的功率路径,该路径实际上会增加瞬变期间的输出电容。可以采用多种解决方案来改善转换器系统的动态性能,但是几乎所有解决方案都是针对具有电压模式控制(VMC)的单相降压转换器而开发的,而在VRM应用中,由于高电流,系统通常被实现为具有电流模式控制的多相降压转换器。如此处所示,附加的能量路径与基于受控电流源(CCS)的输出阻抗校正电路(OICC)一起引入。 OICC用于注入或提取比输出电容器电流大n-1倍的电流,因此在瞬变期间实际上将n倍于输出电容值。此外,这项工作将OICC概念扩展到了多相降压转换器系统,同时将建议的解决方案与具有n倍大输出电容器的系统进行了比较。此外,OICC被实现为具有PCMC的同步降压转换器,从而降低了其对系统效率的影响。

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