基于电缆轨迹多项式表示的复杂电缆束几何模型的改进

X. Liu, F. Grassi, G. Spadacini, S. Pignari
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引用次数: 0

摘要

本文提出了一种模拟手工组装随机电缆束的新方法。该方法预计通过解析多项式曲线表示束中的每个电缆位置,保证了轨迹的平滑性,以及考虑束随机性的灵活性。生成的束几何形状与全波和基于传输在线的模拟相结合,可以准确预测由于电线之间的串扰和外部电磁场引起的束终端噪声。通过与[1]中计算效率更高的近似模型进行比较,所提出的示例证明了所提出的生成算法的有效性,如果目标是在较宽的频率区间内进行可靠的预测,则需要对束进行准确的表示和离散化。
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Enhanced Geometrical Model of Complex Cable Bundles Through Polynomial Representation of Cable Trajectories
In this paper, a novel approach for modelling hand-assembled random cable bundles is presented. The proposed method foresees to represent each cable position in the bundle via analytical polynomial curves, assuring smoothness of trajectories, as well as flexibility in accounting for bundle randomness. The generated bundle geometry is used in combination with full-wave and transmission-line based simulation, providing accurate predictions of the noise induced at the bundle terminals due to crosstalk between wires and due to an external EM field. The proposed examples, run in comparison with the more computationally-efficient yet approximate model in [1], prove the validity of the proposed generation algorithm and the need for accurate representation and discretization of the bundle if reliable predictions in a wide frequency interval are the target.
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