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Predictive Digital Current Control of Single-Inductor Multiple-Output Converters in CCM With Low Cross Regulation

机译:低交叉调节的CCM中的单电感器多输出转换器的预测数字电流控制

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摘要

This paper presents a new digital current-mode control technique for single-inductor multiple-output converters in continuous-conduction mode. This predictive control method can calculate all the required duty cycles corresponding to the outputs for the next switching cycle. Since the calculation is based on every current reference representing the load current, all current control loops corresponding to different outputs are theoretically independent, which can greatly reduce the cross regulation. To avoid subharmonic oscillation, proper predictive digital current control is adopted. Inductor current estimation is used to remove the current sensing circuit, and corresponding calibration techniques are presented. Simulation and experimental results are given to verify the effectiveness of this control technique.
机译:本文提出了一种用于连续导通模式下的单电感器多输出转换器的数字电流模式控制新技术。这种预测控制方法可以计算与下一个开关周期的输出相对应的所有所需占空比。由于计算是基于代表负载电流的每个电流基准进行的,因此理论上与不同输出相对应的所有电流控制环路都是独立的,这可以大大减少交叉调节。为避免次谐波振荡,应采用适当的预测数字电流控制。电感电流估计用于去除电流检测电路,并提出了相应的校准技术。仿真和实验结果证明了该控制技术的有效性。

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