考虑磁饱和的大信号剖面Buck变换器无电流传感器在线电容参数估计方法

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Xinguo Zhang;Xue Su;Yilin Wang;Haoyu Wang;Yu Liu
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引用次数: 0

摘要

大信号轮廓通常用于估计功率变换器中的电容参数,这通常需要电流信息。在实际的电源转换器中安装电流传感器既不方便又昂贵。现有的无电流传感器方法基于电压测量来计算电流。然而,忽略电感的磁饱和会造成较大的电流计算误差,进而影响电容参数的估计结果。针对降压变换器,本文提出了一种充分考虑电感磁饱和的无电流传感器电容参数估计方法。首先,将磁通链与电感电流之间的关系建模为分段多项式函数,以便在磁饱和时利用电压测量准确提取电流。随后,严格推导了电容器的等效串联电阻和电容,并仅通过电压测量解析表示。仿真和硬件实验验证了该方法的有效性和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current Sensorless Online Capacitor Parameter Estimation Method in Buck Converters Based on Large Signal Profile Considering Magnetic Saturation
Large signal profiles are commonly utilized for estimating capacitor parameters in power converters, which typically requires current information. Installation of current sensors in practical power converters could be inconvenient and expensive. Existing current sensorless methods calculate the current based on voltage measurements. However, the ignorance of magnetic saturation of inductors could cause large current calculation errors, which propagate to the capacitor parameter estimation results. For buck converters, this paper proposes a current sensorless capacitor parameter estimation method that fully considers the magnetic saturation of inductors. Initially, the relationship between magnetic flux linkage and inductor current is modeled as a piecewise polynomial function, to achieve accurate extraction of currents using voltage measurements during magnetic saturation. Subsequently, the equivalent series resistance and capacitance of the capacitor are rigorously derived and analytically expressed by voltage measurements only. Simulations and hardware experiments confirm the effectiveness and accuracy of the proposed method.
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来源期刊
CiteScore
8.60
自引率
0.00%
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审稿时长
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