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Current Share in Multiphase DC–DC Converters Using Digital Filtering Techniques

机译:使用数字滤波技术的多相DC-DC转换器中的电流共享

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This paper introduces a new method of passive current balancing for digital control of multiphase dc–dc converters based upon the duty-cycle-matching principle. Current balance is achieved by inserting a digital filter into the control path. The method does not rely on a current balancing loop, and therefore, the stability and performance concerns associated with the traditional current balance loop are obviated. Being sensorless, it is insensitive to current measurement inaccuracies caused by noise, component value tolerance, or variation. It will be shown that effective current balancing can be achieved via some simple modifications to standard voltage-mode control laws, allowing current balancing to be achieved with minor additional complexity. The effectiveness of the method has been demonstrated by experimental validation of a multiphase dc–dc converter. The current share scheme has been shown to perform well dynamically, matching currents cycle by cycle during load steps, and clearly benefiting from the absence of the slow current share loop popular in traditional methods. The proposed current share filter blends well with existing digital controllers. Given the very low complexity in implementing the filter, the degree of matching achieved is exceptional.
机译:本文介绍了一种基于占空比匹配原理的,用于多相DC-DC转换器数字控制的无源电流平衡新方法。通过在控制路径中插入数字滤波器来实现电流平衡。该方法不依赖于电流平衡回路,因此避免了与传统电流平衡回路相关的稳定性和性能问题。由于没有传感器,因此它对由噪声,组件值公差或变化引起的电流测量误差不敏感。将表明,可以通过对标准电压模式控制定律进行一些简单的修改来实现有效的电流平衡,从而以较小的附加复杂度实现电流平衡。该方法的有效性已通过多相dc-dc转换器的实验验证得到证明。电流共享方案已显示出动态良好的性能,在负载步骤期间逐周期匹配电流,并且显然得益于传统方法中不存在的慢电流共享环路。拟议的均流滤波器与现有的数字控制器很好地融合在一起。鉴于实现滤波器的复杂性非常低,因此实现的匹配程度非常出色。

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