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Active current transformer circuits for low distortion sensing in switched mode power converters

机译:有源电流互感器电路,用于开关电源转换器中的低失真感测

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The current transformer (CT) is frequently used for sensing applications in switched mode power converters. Advantages are that galvanic isolation is inherently incorporated, bandwidth is high, losses are low and that a high-amplitude output signal may be derived. Because of this combination of advantages it may be preferred to other current sensing technologies such as the Hall-effect sensor or the sense resistance. However, it exhibits some limitations. A compromise exists between the amplitude of the output signal and the distortion present in it due to droop. Droop results as some of the input current under measurement diverts away from the "ideal" transformer within the CT's equivalent circuit and into its magnetizing branch. In addition, where the CT is used for sensing unidirectional current pulses, the duty cycle of the pulses has to be restricted if saturation of its core material is to be avoided. This paper describes techniques based on the incorporation of an active load and synchronous rectification for reducing the distortion due to droop and allowing operation at extended duty cycles. Experimental results are given for a dual transformer arrangement used to sense the choke current drawn by a boost converter circuit.
机译:电流互感器(CT)通常用于开关模式电源转换器中的传感应用。优点是固有地包含了电隔离,带宽高,损耗低并且可以导出高振幅输出信号。由于这些优点的结合,它可能比其他电流感测技术(例如霍尔效应传感器或感测电阻)更可取。但是,它存在一些局限性。在输出信号的幅度和由于下垂而导致的输出失真之间存在折衷。由于某些被测输入电流从CT等效电路内的“理想”变压器转移到其励磁分支中,导致出现下垂。另外,在使用CT感测单向电流脉冲的情况下,如果要避免其核心材料饱和,就必须限制脉冲的占空比。本文介绍了一种基于合并有功负载和同步整流的技术,以减少由于下垂引起的失真并允许在延长的占空比下工作。给出了用于感测升压转换器电路汲取的扼流电流的双变压器装置的实验结果。

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