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A Simple Sensorless Current Sharing Technique for Multiphase DC–DC Buck Converters

机译:多相DC-DC Buck转换器的一种简单的无传感器均流技术

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Multiphase buck converters are widely used to power up low-voltage high-current loads, such as microprocessors, battery chargers, hybrid vehicles, among others. For this converter, topology is necessary to guarantee a correct distribution of the total output current among phases in order to ensure proportionality in electrical losses and thermal stresses. So, a current sharing scheme is a desirable part in a multiphase buck converter. Most of the proposed current distribution schemes include sensing circuitry and a current loop for each phase. Nevertheless, by using sensors, control complexity and assembly costs increases proportionally to the number of phases. This paper presents a simple sensorless current sharing algorithm for multiphase buck converters. The proposed technique is based on simple one-time tests by turning-on each phase in order to estimate the parasitic resistance for the turned-on phase. Once the parasitic resistances are known, the duty cycles, which allow for adequate current sharing among phases, are calculated. An extra control algorithm ensures that the compensated duty cycle is applied at the switching node. This extra control loop does not require analog-to-digital converters. Analysis and experimental results of proposed control technique are shown using a five-phase dc–dc buck converter. The proposed algorithm exhibits an adequate distribution of the load current between phases.
机译:多相降压转换器广泛用于为低压大电流负载供电,例如微处理器,电池充电器,混合动力汽车等。对于此转换器,必须采用拓扑结构以确保总输出电流在各相之间正确分配,以确保电损耗和热应力成比例。因此,电流共享方案是多相降压转换器中的理想部分。大多数提出的电流分配方案都包括用于每个相的感测电路和电流环路。然而,通过使用传感器,控制复杂性和组装成本与相数成比例地增加。本文提出了一种用于多相降压转换器的简单无传感器电流共享算法。所提出的技术基于简单的一次测试,即通过接通每个相来估计接通相的寄生电阻。一旦知道了寄生电阻,就可以计算出允许各相之间充分共享电流的占空比。额外的控制算法可确保在开关节点处应用补偿的占空比。这种额外的控制回路不需要模数转换器。使用五相dc-dc buck转换器显示了所提出的控制技术的分析和实验结果。所提出的算法展现出相之间的负载电流的适当分布。

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