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Prediction of common-mode radiation from cables attached to PCB using imbalance difference and asymmetrical dipole antenna models

机译:使用不平衡差和非对称偶极天线模型预测来自连接到PCB的电缆的共模辐射

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摘要

Cables attached to a PCB can produce a significant amount of unintentional common-mode (CM) radiated emissions (REs). Therefore, it is important to predict these emissions at the design stage before the first prototype is fabricated to ensure time and cost savings. In this Letter, a novel method was proposed to estimate the CM RE from two cables attached to a PCB using the imbalance difference model and asymmetrical dipole antenna model. The proposed method consists of two steps: first, the induced CM voltages on the junctions between the cables and PCB are computed using the imbalance difference model; secondly, the CM REs are then estimated separately for each cable related to half of the ground plane using the asymmetrical dipole antenna model. The overall REs are then computed by the superposition of the RE from the two asymmetrical dipoles. The effectiveness of the proposed method has been verified by comparing the predicted results to both 3D high-frequency structure simulator simulation results and measurement results taken in a semi-anechoic chamber. A good agreement with the accuracy of more than 95% is observed for the upper bounds of the measured REs.
机译:连接到PCB的电缆会产生大量的非故意共模(CM)辐射(RE)。因此,重要的是在制造第一个原型之前在设计阶段预测这些排放,以确保节省时间和成本。在这封信中,提出了一种新方法,该方法使用不平衡差模型和非对称偶极子天线模型从连接到PCB的两条电缆估计CM RE。所提出的方法包括两个步骤:首先,使用不平衡差模型计算电缆与PCB之间的交点处的感应CM电压;其次,然后使用非对称偶极天线模型分别针对与接地平面一半有关的每条电缆分别估计CM RE。然后,通过两个不对称偶极子的RE叠加计算出总RE。通过将预测结果与3D高频结构仿真器仿真结果和在半消声室中获得的测量结果进行比较,验证了该方法的有效性。对于所测量的RE的上限,可以观察到95%以上的准确度。

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