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Multiphase current-controlled buck converter with energy recycling output impedance correction circuit (OICC)

机译:具有能量回收输出阻抗校正电路(OICC)的多相电流控制降压转换器

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摘要

This study is related to the improvement of the output impedance of a multiphase buck converter with peak current mode control (PCMC) by means of introducing an additional power path, which 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, while in the voltage regulation module applications, due to the high currents and dynamic specifications, the system is usually implemented as a multiphase buck converter with current mode control to ensure current sharing. The proposed circuit, output impedance correction circuit (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, the OICC concept is extended to a multiphase buck converter system and the proposed solution is compared with the system that has n times bigger output capacitor in terms of dynamic behavior and static and dynamic efficiency. The OICC is implemented as a synchronous buck converter with PCMC, thus reducing its penalty on the system efficiency.
机译:这项研究与通过引入额外的功率路径来改善具有峰值电流模式控制(PCMC)的多相降压转换器的输出阻抗有关,该路径实际上增加了瞬态期间的输​​出电容。存在可以用来改善转换器系统的动态性能的各种解决方案,但是几乎所有解决方案都是针对具有电压模式控制的单相降压转换器而开发的,而在电压调节模块的应用中,由于高电流和动态在规范中,该系统通常实现为具有电流模式控制的多相降压转换器,以确保电流共享。所提出的电路,即输出阻抗校正电路(OICC),用于注入或提取比输出电容器电流大n-1倍的电流,因此实际上在瞬变期间将输出电容值提高了n倍。此外,将OICC概念扩展到多相降压转换器系统,并将所提出的解决方案与动态行为以及静态和动态效率方面具有n倍大输出电容器的系统进行比较。 OICC与PCMC一起实现为同步降压转换器,从而减少了对系统效率的损失。

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