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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Efficient Reciprocity-Based Algorithm to Predict Worst Case Induced Disturbances on Multiconductor Transmission Lines due to Incoming Plane Waves
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Efficient Reciprocity-Based Algorithm to Predict Worst Case Induced Disturbances on Multiconductor Transmission Lines due to Incoming Plane Waves

机译:基于有效互惠的算法,预测入射平面波在多导体传输线上产生的最坏情况引起的干扰

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摘要

In this paper, an efficient reciprocity-based algorithm is proposed to predict the worst case voltages and currents induced by external plane waves at the ports of a multiconductor transmission-line system. The proposed algorithm consists of two main steps. In the first step, the far-field radiation of the multiconductor transmission-line system is fully characterized by a minimal number of full-wave simulations. In the second step, this information is used to efficiently evaluate the voltages and currents induced by a plane wave with arbitrary angles of incidence and polarization. After this, their worst case values can be easily found. The main advantage of the proposed algorithm is that no new full-wave simulations are required if different incoming plane waves or different sets of terminations at the ports of the multiconductor transmission-line system are to be considered.
机译:在本文中,提出了一种基于互惠的有效算法,以预测多导体传输线系统端口处的外部平面波感应的最坏情况下的电压和电流。所提出的算法包括两个主要步骤。第一步,通过最少数量的全波模拟充分表征多导体传输线系统的远场辐射。在第二步中,此信息用于有效评估由具有任意入射角和极化角的平面波感应的电压和电流。此后,可以轻松找到其最坏情况的值。所提出算法的主要优点是,如果要考虑在多导体传输线系统的端口处不同的入射平面波或不同的终端集,则不需要新的全波仿真。

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