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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Combined Method-of-Moments and Near-Field Measurements for EMI Evaluation of Switched-Mode Power Supplies
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A Combined Method-of-Moments and Near-Field Measurements for EMI Evaluation of Switched-Mode Power Supplies

机译:矩量法和近场测量相结合的方法,用于评估开关电源的EMI

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摘要

We propose an efficient modeling technique for the evaluation of radiated electromagnetic interference due to a switch-mode power supply mounted on a typical electronic printed circuit board (PCB). In the proposed model, first, the measured magnetic field on a rectangular plane in the vicinity of the PCB is used to identify equivalent current sources on the board surface by the method-of-moments. Having determined the radiating sources, the governing integral equations in free space are then utilized to compute the magnetic-field distribution at a desired distance from the PCB. The main feature of the proposed model is the use of both the magnitude and phase of the near-magnetic field for identifying the unknown current sources. This is found to be advantageous over the conventional models where the measurements are done on two separate planes or involve time-consuming heuristic optimization algorithms to invert the measured magnetic-field data into unknown current sources. The validity of the proposed technique is demonstrated by comparing the actual and reconstructed field radiations due to several simulated and fabricated sources.
机译:我们提出了一种有效的建模技术,用于评估由于安装在典型电子印刷电路板(PCB)上的开关电源引起的辐射电磁干扰。在所提出的模型中,首先,通过矩量法,使用在PCB附近的矩形平面上测得的磁场来识别板表面上的等效电流源。确定了辐射源之后,然后利用自由空间中的控制积分方程式来计算距PCB所需距离的磁场分布。所提出模型的主要特征是利用近磁场的幅度和相位来识别未知电流源。已发现这优于常规模型,在常规模型中,测量是在两个单独的平面上进行的,或者涉及耗时的启发式优化算法,以将测量的磁场数据转换为未知的电流源。通过比较由于几种模拟和伪造源而产生的实际和重建场辐射,证明了所提出技术的有效性。

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