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Unified digital sliding mode control with inductor current ripple reconstruction for DC-DC converters

机译:DC-DC转换器的统一数字滑模控制和电感器电流纹波重构

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In this paper, a digital implementation of a unified sliding mode controller for DC-DC converters is presented. Although current information is used as a control variable, a pure voltage-mode implementation has been considered and the inductor current ripple is digitally reconstructed. The proposed universal control algorithm can be applied to different converter topologies and operating modes. In particular, experimental results are shown for a prototyping system of a Buck converter operating in Continuous Conduction Mode (CCM) and Discontinuous Conduction Mode (DCM), where only negligible transient effects are present when changing the operation mode. The presented measurements confirm that the proposed universal control algorithm is capable of achieving tight voltage regulation and excellent dynamic performance under different operating conditions. Additionally, a comparison to a state-of-the-art digital Proportional-Integral-Derivative (PID) controller illustrates the performance improvement of the proposed digital control scheme.
机译:本文提出了一种用于DC-DC转换器的统一滑模控制器的数字实现。尽管将电流信息用作控制变量,但已考虑采用纯电压模式实现,并且以数字方式重构了电感器电流纹波。所提出的通用控制算法可以应用于不同的转换器拓扑和操作模式。尤其是,显示了在连续导电模式(CCM)和不连续导电模式(DCM)下工作的Buck转换器原型系统的实验结果,其中在更改工作模式时仅存在可忽略的瞬态效应。提出的测量结果证实了所提出的通用控制算法能够在不同的工作条件下实现严格的电压调节和出色的动态性能。此外,与最新的数字比例积分微分(PID)控制器的比较说明了所提出的数字控制方案的性能改进。

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