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Control Scheme for Sensorless Operation and Detection of CCM and DCM Operation Modes in Synchronous Switching Power Converters

机译:同步开关电源转换器中无传感器操作以及CCM和DCM操作模式检测的控制方案

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摘要

Switching power converters with synchronous rectification utilize transitioning between inductor''s current continuous and discontinuous conduction operation modes (CCM and DCM) in order to achieve improved power efficiency across wide load and input voltage ranges. The inductor current zero crossing is sensed in order to detect the operation modes transition point between CCM and DCM. The challenges associated with this include inductor current zero crossing point sensing accuracy, noise effect near the zero crossing point, and the sensing circuitry speed and power loss. Moreover, additional hardware such as analog-to-digital converter is required if the controller used is a fully digital controller. In this letter, a control scheme for sensorless operation and detection of CCM and DCM in a switching power converter is presented. The presented controller utilizes dual control loops and does not require sensing the inductor current or any current in the converter, which eliminates or reduces challenges associated with inductor current sensing for the zero point detection. The presented controller is discussed, and proof-of-concept experimental prototype results are presented.
机译:具有同步整流的开关功率转换器利用电感器的电流连续和非连续导通工作模式(CCM和DCM)之间的转换,以在较宽的负载和输入电压范围内实现更高的功率效率。检测电感器电流过零,以检测CCM和DCM之间的工作模式转换点。与此相关的挑战包括电感器电流零交叉点的感应精度,零交叉点附近的噪声效应以及感应电路的速度和功率损耗。此外,如果使用的控制器是全数字控制器,则需要其他硬件,例如模数转换器。在这封信中,提出了一种用于开关电源转换器中无传感器操作以及CCM和DCM检测的控制方案。提出的控制器利用双控制环路,不需要感测电感电流或转换器中的任何电流,从而消除或减少了与电感电流感测零点检测相关的挑战。讨论了提出的控制器,并提出了概念验证的实验原型结果。

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