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A Phenomenological Approach Based on Two Unified Loss Parameters for Transient Analysis of Transmission Lines

机译:基于两个统一损耗参数的输电线路瞬态分析的现象学方法

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This article proposes a causal, accurate, and case-independent model, which can be used for the transient analysis of lossy coupled transmission lines. In addition to propagation delay and characteristic impedance, the method uses a phenomenological study on the frequency dependence of the transmission lines and identifies two unified parameters that, respectively, correspond to conductor (skin-effect) and dielectric loss. An accurate transient response is derived, and a generic circuit library is established for efficient and case-independent SPICE simulation. Using peak distortion analysis, the eye diagram versus loss parameters is plotted into unified design charts for eye height and width, which depicts the signal quality without the need for pseudorandom bit sequence simulation. The proposed model is also generalized to coupled transmission lines. The far-end crosstalk noise is found to be significantly affected by the loss parameters, and the proposed circuit model ensures accurate simulation.
机译:本文提出了一种因果关系,准确且与大小写无关的模型,该模型可用于有损耦合传输线的瞬态分析。除了传播延迟和特征阻抗外,该方法还对传输线的频率依赖性进行了现象学研究,并确定了两个统一的参数,分别对应于导体(趋肤效应)和介电损耗。得出了准确的瞬态响应,并建立了通​​用电路库以进行有效且不区分大小写的SPICE仿真。使用峰值失真分析,将眼图与损耗参数绘制到针对眼高和眼宽的统一设计图表中,从而无需伪随机比特序列仿真即可描绘出信号质量。提出的模型也可以推广到耦合传输线。发现远端串扰噪声受损耗参数的影响很大,所提出的电路模型可确保精确的仿真。

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