Design and Realization of a Digital Multiphase-Interleaved VRM Controller Using FPGA

Yi-Chung Wang, Y. Tzou
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引用次数: 12

Abstract

Voltage regulator modules (VRM) are used for low- voltage, high-current dc-dc converters used for high- performance microprocessors and graphic processors. This paper describes the development of a digital PWM controller architecture in applications to multiphase-interleaved VRM A digital current control technique with interleaved PWM generation and synchronous current sampling has been developed to improve the transient response under large load disturbances. The proposed control scheme for the interleaved multiphase buck converter employs feedback signals of output voltage, output current, and per-phase inductor current. By using a synchronous over-sampling technique for the detection per-phase inductor current and double-edge PWM modulation technique, the current response can reach a dead- beat performance for step current command. Current sharing control is used to equalize the current of each phase converter under possible parameters mismatch. A computer simulation study has been carried out to illustrate the feasibility and performance of the proposed digital control technique.
基于FPGA的数字多相交错VRM控制器设计与实现
电压调节器模块(VRM)用于高性能微处理器和图形处理器的低电压、大电流dc-dc转换器。本文介绍了一种应用于多相交错VRM的数字PWM控制器体系结构的发展。为了改善大负载扰动下的暂态响应,提出了一种采用交错PWM产生和同步电流采样的数字电流控制技术。提出的交错多相降压变换器控制方案采用输出电压、输出电流和每相电感电流的反馈信号。通过采用同步过采样技术检测每相电感电流,并采用双边沿PWM调制技术,使电流响应达到阶跃电流指令的死拍性能。电流共享控制用于在各参数可能不匹配的情况下均衡各变流器的电流。计算机仿真研究说明了所提出的数字控制技术的可行性和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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