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Accuracy improvement of large current test by split wires of magnetic component winding

机译:磁性元件绕组的分体导线提高大电流测试的精度

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摘要

High-frequency large current tests are critical in almost all switch-mode power conversion systems. To measure this large current, large size current sensor with large current rating is always needed to bring many disadvantages of bulk volume, less accuracy and high cost. One of the solutions is to use current split technique with the split wires of the winding in magnetic components to measure the current in only one of the strands of the multi-strands Litz wires in magnetic components. In this paper, the mechanics of the current split ratio shifts for different frequencies are revealed. The model is also built and analyzed to find that the leakage inductance ratio between the current testing strand and other strands is the key factor which dominates the current split ratio. Based on the model, a simple method was proposed to improve the current split ratio for different frequencies. The practical tests were performed to verify the method and its current testing precision.
机译:高频大电流测试在几乎所有开关模式电源转换系统中都至关重要。为了测量这种大电流,总是需要具有大额定电流的大尺寸电流传感器,以带来体积大,精度低和成本高的许多缺点。解决方案之一是使用电流分裂技术,将绕组的分裂线插入磁性元件中,以仅测量磁性构件中多股利兹线的其中一根股线中的电流。在本文中,揭示了不同频率下电流分流比偏移的机理。还构建并分析了该模型,以发现电流测试线束与其他线束之间的漏感比是决定电流分流比的关键因素。基于该模型,提出了一种提高不同频率下电流分流比的简单方法。进行了实际测试以验证该方法及其当前的测试精度。

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