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Low cost inductor current sensing for power converters using feedback compensation

机译:使用反馈补偿的功率转换器的低成本电感器电流感测

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One of the key components in the Current mode control of power converters is the sensing of inductor current. Traditional low cost implementation is to add a sensing resistor in series with the inductor to sense the inductor current. This will reduce the overall efficiency of the power converter. An alternative is to apply a current transformer to the inductor to sense its current. This however will significantly increase the cost of power converters. One low cost implementation is to add a resistor-capacitor network in parallel with the inductor so that the inductor current can be derived from the capacitor voltage. The problem of this implementation is that the capacitor voltage is very sensitive to temperature variations. In this paper, a simple feedback loop is applied to the sensed capacitor voltage based on the steady state duty ratio of power converters such that the sensed inductor current will be independent of temperature variations. The sensing element with feedback compensation can be applied to inductors fitted to power converters Such as buck converters and boost converters. Although experimental studies based on a buck converter were carried Out to illustrate the correctness of the new sensing technique, the proposed technique is applicable to other converter topologies. Crown Copyright (C) 2008 Published by Elsevier B.V. All rights reserved.
机译:功率转换器电流模式控制中的关键组件之一是感应电流。传统的低成本实现是在电感上串联一个检测电阻,以检测电感电流。这将降低功率转换器的整体效率。另一种选择是将电流互感器应用于电感器以感测其电流。然而,这将大大增加功率转换器的成本。一种低成本的实现方式是添加一个与电感器并联的电阻器-电容器网络,以便可以从电容器电压中导出电感器电流。这种实施方式的问题是电容器电压对温度变化非常敏感。在本文中,基于功率转换器的稳态占空比,将一个简单的反馈环路应用于感测到的电容器电压,从而使感测到的电感器电流与温度变化无关。具有反馈补偿的感应元件可以应用于安装在功率转换器(例如降压转换器和升压转换器)上的电感器。尽管进行了基于降压转换器的实验研究以说明新感测技术的正确性,但所提出的技术也适用于其他转换器拓扑。 Crown版权所有(C)2008,Elsevier B.V.保留所有权利。

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