RFI Noise Source Quantification Based on Reciprocity

Yin Sun, B. Tseng, Hank Lin, C. Hwang
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引用次数: 11

Abstract

In modern mobile electronic systems, several high speed digital ICs often working simultaneously and can cause interference issues with nearby antennas at the same time. In this paper, a method to quantify the contribution of multiple noise sources radiating simultaneously is proposed. The reciprocity theorem based radio frequency interference (RFI) estimation can be decomposed into forward and reverse problems. Multiple imaginary Huygens' boxes are introduced to enclose different IC noise sources. In forward problem, the ICs are working and the tangential E and H fields on corresponding Huygens' boxes can be obtained. In reverse problem, the victim antenna is excited while the noise sources are turned off. On the same set of Huygens' boxes, the tangential electromagnetic fields from the radiating antenna can also be recorded. With tangential E and H fields in both the forward and reverse problems on different Huygens' boxes, the coupled voltage contributed by multiple noise sources can be calculated separately using reciprocity theorem. The RFI noise source quantification method is validated by simulation. A test structure with two simultaneously radiated traces and a planar inverted-F antenna (PIFA) is used.
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基于互易性的射频噪声源量化
在现代移动电子系统中,多个高速数字集成电路经常同时工作,并可能同时与附近的天线产生干扰问题。本文提出了一种量化多个噪声源同时辐射的贡献的方法。基于互易定理的射频干扰估计可以分解为正向和反向问题。引入多个虚拟惠更斯盒来封闭不同的集成电路噪声源。在正演问题中,ic工作,得到相应惠更斯盒上的切向E场和切向H场。在反向问题中,在关闭噪声源的情况下对受害天线进行激励。在同一套惠更斯盒子上,还可以记录辐射天线的切向电磁场。在不同惠更斯箱的正、反向问题中均有切向的E场和H场,利用互易定理可以分别计算多个噪声源贡献的耦合电压。仿真验证了RFI噪声源量化方法。测试结构采用了两个同步辐射走线和一个平面倒f天线(PIFA)。
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