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Digital Hybrid Ripple-Based Constant On-Time Control for Voltage Regulator Modules

机译:基于数字混合纹波的稳压器模块恒定导通时间控制

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This paper presents a digital hybrid ripple-based constant on-time control scheme for voltage regulator modules (VRMs). Due to the sampling effects of the digital implementation, the stability issue becomes worse than the analog ripple-based control schemes, especially when the composite output capacitors are utilized. In order to stabilize the system and to fulfill the output impedance requirement of adaptive voltage positioning (AVP), a hybrid ramp compensation strategy, which includes the external ramp and the estimated current ramp, is proposed in this paper. No complicated compensators are required as the conventional voltage-mode control. The small-signal model of the proposed architecture is derived to provide the design guideline for the ramp compensation gains with different output capacitors. Besides, the oversampling effect of the output voltage by using analog-to-digital converters (ADCs) are also analyzed by using the presented model. Simulation and experimental results show that the proposed digital ripple-based control architecture can achieve fast load transient performance and to fulfill the AVP design requirements of single-phase VRMs.
机译:本文提出了一种用于稳压器模块(VRM)的基于数字混合纹波的恒定导通时间控制方案。由于数字实现的采样效果,稳定性问题比基于模拟纹波的控制方案更糟,尤其是在使用复合输出电容器时。为了稳定系统并满足自适应电压定位(AVP)的输出阻抗要求,本文提出了一种混合斜率补偿策略,其中包括外部斜率和估计电流斜率。不需要像传统的电压模式控制那样复杂的补偿器。推导了所提出架构的小信号模型,以为使用不同输出电容器的斜坡补偿增益提供设计指南。此外,还使用所提出的模型分析了使用模数转换器(ADC)对输出电压的过采样效应。仿真和实验结果表明,提出的基于数字纹波的控制架构可以实现快速的负载瞬态性能,并满足单相VRM的AVP设计要求。

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