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A New Digital Adaptive Voltage Positioning Technique with Dynamically Varying Voltage and Current References

机译:动态改变电压和电流基准的数字自适应电压定位新技术

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摘要

A digital adaptive voltage positioning (digital AVP) technique with fast transient response for voltage regulators (VRs) is proposed in this paper. The proposed digital control architecture operates with fixed-frequency peak current mode control. Two digital-to-analog converters (DACs) are used instead of analog-to-digital converters (ADCs), thus significantly reducing system complexity. The control law is straightforward and no compensator is involved in the control loop, which greatly reduces the computation delay. Both the voltage and current references are changed dynamically at DAC clock frequency to achieve fast transient response. Furthermore, dynamic reference step adjustment method is employed to reduce the high-speed requirement on reference updating clock without compromising steady-state performance. Nonlinear control, including operation state recognition, multimode operation, decision-making and multiturn-on/turn-off control schemes, is used to minimize the transient-assertion-to-action delay and maximize the inductor current slew rate. Steady-state analysis was performed to demonstrate the digital controller operation. Finally, a two-phase 12- to 1-V, 40-A, 250-kHz synchronous buck converter with the proposed digital controller was designed to verify the theoretical analysis by simulation and experimental results.
机译:本文提出了一种具有快速瞬态响应的数字自适应电压定位(Digital AVP)技术,用于电压调节器(VR)。所提出的数字控制体系结构采用固定频率峰值电流模式控制。使用两个数模转换器(DAC)代替模数转换器(ADC),从而大大降低了系统复杂性。控制律简单明了,控制回路中没有补偿器,大大减少了计算延迟。基准电压和电流基准均以DAC时钟频率动态变化,以实现快速瞬态响应。此外,采用动态参考步长调整方法来降低对参考更新时钟的高速要求,而不会损害稳态性能。非线性控制,包括操作状态识别,多模式操作,决策和多开/关控制方案,用于最小化瞬时断言到动作延迟并最大化电感电流摆率。进行稳态分析以演示数字控制器的操作。最后,设计了带有建议数字控制器的两相12至1V,40A,250kHz同步降压转换器,以通过仿真和实验结果验证理论分析。

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