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Validation of Worst-Case and Statistical Models for an Automotive EMC Expert System

机译:验证汽车EMC专家系统的最坏情况和统计​​模型

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Previous papers have presented algorithms for an EMC expert system used to predict potential electromagnetic compatibility problems in a vehicle early in the design process. Here, the accuracy of inductive and capacitive coupling algorithms are verified through representative measurements of crosstalk within an automobile. Worst-case estimates used by the algorithms are compared to measured values and are compared to values estimated using statistical methods. The worst-case algorithms performed well up to 10-20 MHz, but overestimated measured results by several dB in some cases and up to 10-15 dB in others. An approximate statistical variation of the current expert system algorithms also worked well and can help avoid overestimation of problems; however, worst-case estimates better ensure that problems will not be missed, especially in the absence of complete system information.
机译:之前的论文已经为EMC专家系统提出了算法,用于预测设计过程早期车辆中的电磁兼容性问题。这里,通过汽车内部串扰的代表测量来验证电感和电容耦合算法的准确性。将算法使用的最坏情况估计与测量值进行比较,并与使用统计方法估计的值进行比较。最坏情况算法良好地表现出高达10-20 MHz,但在某些情况下,几种DB的测量结果高估了,其他DB在其他情况下高达10-15磅。当前专家系统算法的近似统计变化也运作良好,有助于避免过度估计问题;然而,最坏的情况估计更好地确保不会错过问题,特别是在没有完整的系统信息的情况下。

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