System-Level Validation of Radiated Noise Source Characterization Using Only Near-Field Magnitude Information

IF 1 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Letters on Electromagnetic Compatibility Practice and Applications Pub Date : 2023-11-06 DOI:10.1109/LEMCPA.2023.3330402
Ze Sun;Yansheng Wang;DongHyun Kim
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Abstract

To characterize the radiated noise sources in the radio-frequency interference simulations, a novel equivalent dipole source extraction method was proposed by our group previously. An iteration algorithm and the genetic algorithm work together to reconstruct an equivalent source using near-field magnitude information only while minimizing the number of dipoles needed. In this letter, the previously proposed equivalent dipole extraction algorithm is extended to efficiently extract an equivalent source of harmonics. Furthermore, the algorithm is verified using the actual product instead of simplified test boards. A rigorous and systematic validation process is proposed and conducted, which ensures the robustness and credibility of the extraction algorithm for future applications.
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仅使用近场幅度信息对辐射噪声源特性进行系统级验证
为了确定射频干扰模拟中辐射噪声源的特征,我们的研究小组之前提出了一种新颖的等效偶极子源提取方法。迭代算法和遗传算法共同作用,仅使用近场幅度信息就能重建等效源,同时最大限度地减少了所需偶极子的数量。在这封信中,我们对之前提出的等效偶极子提取算法进行了扩展,以有效提取谐波的等效源。此外,该算法使用实际产品而非简化测试板进行验证。文中提出并实施了严格而系统的验证过程,从而确保了提取算法在未来应用中的稳健性和可信度。
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2025 Index IEEE Transactions on Electromagnetic Compatiblity Practice and Applications Table of Contents Front Cover Editorial: Message From the Editor-in-Chief IEEE ELECTROMAGNETIC COMPATIBILITY SOCIETY
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