不同单位功率因数AC/DC变换器传导射频辐射的比较

J. Mahdavi, M. Tabandeh, A. Shahriari
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引用次数: 22

摘要

传统交直流变换器的主要缺点是交流电源注入频率低,功率因数小。通过采用电流模式控制,可以设计变换器使其输入电流具有正弦形式并与电源电压相一致。用高频开关电流模式控制解决了功率因数问题,又产生了另一个问题;功率转换器在射频(RF)范围内产生的高频谐波。本文采用了一种固定拓扑的交流/直流功率变换器(二极管桥+升压变换器),并采用了多种电流控制方法。在模拟了变换器的行为后,也采用了标准网络的仿真;“线路阻抗稳定网络”(LISN),置于交流电源和变换器之间,计算传导的射频噪声。最后,将室内实验结果与仿真结果进行了比较。
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Comparison of conducted RFI emission from different unity power factor AC/DC converters
Low frequency harmonics injection into AC power supply and small power factor are the main disadvantages of conventional AC/DC converters. By using current mode control, the converter can be designed such that its input current have a sinusoidal form and in phase with the power supply voltage. By solving the problem of power factor with high frequency switching current mode control, another problem arises; that of high frequency harmonics generated in radiofrequency (RF) range by the power converter. In this paper, an AC/DC power converter with fixed topology (diode bridge+boost converter) is used and various current control methods are applied to it. After simulating the converter behavior and also using the simulation of a standard network; "line impedance stabilization network", (LISN), placed between the AC power supply and the converter, the conducted RF noise is computed. Finally, laboratory experimental results were compared with simulation results.
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Program committee Cover page Double boost effect topology for AC/DC converter with unity power factor Optimizing the AC resistance of multilayer transformer windings with arbitrary current waveforms A novel quasi-resonant DC-DC converter using phase-shift modulation in secondary side of high-frequency transformer
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