首页> 外文会议>2010 IEEE International Conference on Industrial Technology (ICIT 2010) >Non-linear control of current-mode buck converter with an optimally scaled auxiliary phase
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Non-linear control of current-mode buck converter with an optimally scaled auxiliary phase

机译:具有最佳比例辅助相位的电流模式降压转换器的非线性控制

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摘要

The main goal of this work is to de-couple the well-known efficiency/dynamic-response trade-off involved in scaling the inductance in dc-dc converters. This is achieved by introducing a low-cost auxiliary phase having an optimally scaled-down inductor and power-stage. The auxiliary phase is activated by a digital non-linear controller only during large transient events and thus does not affect the efficiency. An experimental 1 MHz, 10 V to 3.3 V current-mode buck converter prototype achieves a settling time below 2 μs and a voltage drop of 50 mV (limited by Rc) for ΔIout=1 A, with an output capacitance of only 10 μF. A robust method was used for detecting the zero crossing of vc(t) and it is shown that if the auxiliary inductor is optimally scaled, charge balancing can easily be achieved for a range of load-steps.
机译:这项工作的主要目的是消除在缩放DC-DC转换器中的电感时所涉及的众所周知的效率/动态响应折衷。这是通过引入具有最佳按比例缩小的电感器和功率级的低成本辅助相来实现的。辅助阶段仅在较大的瞬态事件期间才由数字非线性控制器激活,因此不会影响效率。实验性的1 MHz,10 V至3.3 V电流模式降压转换器原型在ΔI out = 1 A的情况下,建立时间低于2μs,压降为50 mV(受Rc限制),其中输出电容仅为10F。一种鲁棒的方法用于检测v c (t)的零交叉,结果表明,如果辅助电感器得到最佳缩放,则可以轻松实现一系列负载阶跃的电荷平衡。

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