Modelling Interactions between Multiport-systems and Canonical Stochastic Environments

B. Michielsen
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Abstract

The interaction between an interconnect system and an electromagnetically active environment is one of the principal concerns in EMC modelling. An interconnect system can be modelled as a multi-port system and all its model parameters can be expressed in terms of integrals over system-bound current distributions and incident electromagnetic fields. These model parameters are the observables of the interaction theory. The difficulty we have to face is that we do not master the environment in every detail and if we want to make useful predictions of levels of environment induced interference, we shall have to quantify the fluctuations around our idealised or “average value” predictions. In this contribution, we define a canonical stochastic environment which can be seen as the most natural choice of ambient field given the knowledge we have about the configuration our system is going to be placed in. This leads to the computation of “interaction resistances,” to be added to the ports, which represent the energetic coupling to the environment. But, even more importantly, these resistances have a computable “noise temperature” expressed in terms of a single parameter characterising the level of the ambient electromagnetic field.
多端口系统与规范随机环境相互作用的建模
互连系统与电磁活动环境之间的相互作用是电磁兼容建模中主要关注的问题之一。互连系统可以建模为一个多端口系统,其所有模型参数都可以用系统边界电流分布和入射电磁场的积分来表示。这些模型参数是相互作用理论的可观测值。我们必须面对的困难是,我们不能掌握环境的每一个细节,如果我们想对环境引起的干扰水平做出有用的预测,我们必须量化我们理想或“平均值”预测周围的波动。在这篇文章中,我们定义了一个典型的随机环境,它可以被看作是环境场的最自然选择,因为我们知道我们的系统将被放置在一个配置中。这导致了“交互阻力”的计算,要添加到端口中,它表示与环境的能量耦合。但是,更重要的是,这些电阻有一个可计算的“噪声温度”,用表征环境电磁场水平的单一参数表示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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