电磁兼容室内印刷电路板和电缆的辐射发射估算

Garrett McCormick, Z. Khan, V. Devabhaktuni, Mansoor Alam, A. Wood
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引用次数: 8

摘要

本文提出了一种新的电磁兼容室内电子系统辐射发射建模方法。所提出的方法利用了这样一个事实,即制造商更喜欢在新产品中重复使用电路/布局,对现有设计进行较小的几何修改。因此,以前EMC测试的可用数据可能包含某些特征/模式,可以从中提取并用于预测类似产品的EMC性能。基于这一观察结果,提出的方法建立了精确的电磁兼容测试环境内辐射发射模型。具体来说,利用pcb -电缆结构的各种几何构型的辐射发射来建立人工神经网络模型。这些开发的模型进行了测试,以预测从给定的pcb电缆结构配置的辐射发射。结果表明,利用所建立的模型可以非常准确地估计辐射发射,而不需要在合规室中进行耗时的模拟和昂贵的原型测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimating radiated emissions from printed circuit boards and cables inside EMC chambers
This paper presents a new approach to modelling radiated emissions from electronic systems inside EMC compliance chambers. The proposed approach exploits the fact that manufacturers prefer reusing circuits/layouts in new products with minor geometrical modifications to the existing designs. The available data from previous EMC testing, therefore, may contain certain features/patterns that may be extracted and employed to predict EMC performance of similar products. Motivated by this observation, the proposed method develops accurate models for radiated emissions inside the EMC testing environment. Specifically, radiated emissions from various geometrical configurations of a PCB-cable structure are employed to develop artificial neural network models. These developed models are tested to predict radiated emissions from a given PCB-cable structure configuration. Results show that very accurate estimates of the radiated emissions can be made using the developed models without requiring the time-consuming simulations and expensive prototype testing in the compliance chambers.
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