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Comparative analysis of FPGA-based digital pulse width modulation techniques for multiphase DC-DC converters

机译:基于FPGA的多相DC-DC转换器数字脉冲宽度调制技术的比较分析

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This paper proposes the development of a new digital pulse width modulation (PWM) scheme for aplication to both single phase and multiphase voltage regulation modules (VRMs), which are used as processor power supplies. A comparative analysis of this novel phase accumulator based PWM generation technique is presented with the traditionally used counter based PWM approach for synchronous buck converter topologies. A simulation study of open loop systems of these digital techniques is carried out to demonstrate their feasibility and performance characteristics. For practical evaluation of these two techniques, experiments in single-phase and eight-phase 12 V to 1V buck converter controlled by an FPGA are performed by using the 16 bit phase accumulator and counter. The impact from the interleaving strategy is presented and peak-to-peak voltage ripple and output spectra are evaluated.
机译:本文提出了一种新的数字脉冲宽度调制(PWM)方案,该方案可用于单相和多相调压模块(VRM),这些模块用作处理器电源。对这种新颖的基于相位累加器的PWM生成技术进行了比较分析,并与传统用于同步降压转换器拓扑的基于计数器的PWM方法进行了比较。对这些数字技术的开环系统进行了仿真研究,以证明其可行性和性能特征。为了对这两种技术进行实际评估,使用16位相位累加器和计数器在由FPGA控制的单相和八相12V至1V降压转换器中进行了实验。提出了交织策略的影响,并评估了峰峰值电压纹波和输出频谱。

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