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Fast-Transient Integrated Digital DC-DC Converter With Predictive and Feedforward Control

机译:具有预测和前馈控制的快速瞬态集成数字DC-DC转换器

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This paper introduces a dual-mode digital dc-dc converter combining the predictive and feedforward control with the conventional PID controller to achieve fast transient response and low overshoot. An additional predictive or jerk component is added to the conventional PID controller to speed up the transient response and reduce the settling time by approximately 50%. This predictive term is based on the second derivative of the error signal and introduces zero to the loop response which leads to increased bandwidth and improved phase margin. In addition, a feedforward control is also employed to further improve the transient by evaluating the change in the inductor current during the on and off time of the power transistors. Theoretical analysis and simulations were carried out to analyze the proposed design and algorithm. The proposed design is verified on silicon with a prototype of a digital dc-dc converter fabricated in CMOS 0.18 $mu$ m process. The digital dc-dc converter achieved a settling time of 4 $mu$s and an overshoot of 15 mV for a step-load transient of 450 mA, which are improved significantly as compared to the prior arts.
机译:本文介绍了一种将预测和前馈控制与常规PID控制器相结合的双模式数字dc-dc转换器,以实现快速的瞬态响应和低过冲。在传统的PID控制器中添加了一个附加的预测或加扰部件,以加快瞬态响应并减少建立时间约50%。该预测项基于误差信号的二阶导数,并将零引入环路响应,从而导致带宽增加和相位裕量提高。另外,前馈控制还用于通过评估功率晶体管导通和截止期间电感器电流的变化来进一步改善瞬态。进行了理论分析和仿真,以分析所提出的设计和算法。拟议的设计在硅上进行了验证,并采用了以0.18μmCMOS工艺制造的数字DC-DC转换器的原型。对于450mA的阶跃负载瞬态,数字DC-DC转换器实现了4μs的建立时间和15mV的过冲,与现有技术相比,该显着改善。

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