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High Power/Current Inductor Loss Measurement with Shunt Resistor Current-sensing Method

机译:采用分流电阻器电流检测方法的高功率/电流电感器损耗测量

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With the high-power-density converters requirement increasing, the power loss analysis of inductive components requested further accurate. Some of the inductors are operated at high frequency and current conditions. However, the high precisely measurement instruments, B-H analyzer, only can provide maximum ± 6A AC ripple current condition at present. In this paper, a low-cost measurement method by using the shunt resistor as a high current sensor is proposed. To abbreviate the measurement deviation cause by the parasitic inductance of shunt resistor, the Runge-Kutta calculation method is applied to figure out the inductor current. Furthermore, a shunt resistor connecting configuration is proposed to reduce the parasitic inductance influence. To demonstrate the feasibility, an inductor is measured under 160 A (RMS) current, 10 kHz switching frequency, and 50 % duty cycle square-wave-voltage measurement conditions as an example.
机译:随着高功率密度转换器需求的增加,对电感组件的功率损耗分析的要求更加精确。一些电感器在高频和电流条件下工作。但是,目前高精度测量仪器B-H分析仪只能提供最大±6A的交流纹波电流条件。本文提出了一种使用并联电阻作为大电流传感器的低成本测量方法。为了简化由分流电阻寄生电感引起的测量偏差,采用Runge-Kutta计算方法来计算电感电流。此外,提出了一种并联电阻连接配置,以减少寄生电感的影响。为了证明其可行性,以一个电感器在160 A(RMS)电流,10 kHz开关频率和50%占空比方波电压测量条件下的测量为例。

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