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Sensitivity Analysis of RF Current Injection Techniques for Immunity Testing of Automotive Ethernet

机译:射频电流注入技术在汽车以太网抗扰度测试中的灵敏度分析

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Resorting to point-to-point communication between two devices over an unshielded twisted-wire pair (UTP), the BroadR-Reach® Physical Layer has the potential to assure very high transmission speeds. However, ensuring immunity of such high-speed data lines in the harsh electromagnetic environment of modern car architectures is a challenging task, requiring repeatable and reliable test procedures for immunity assessment. This work investigates and compares the performance of the Bulk Current Injection (BCi) and of the Tubular Wave Coupler (TWC) techniques-currently foreseen by the ISO standard up to 400 MHz and from 400 MHz up to 3 GHz, respectively-in testing the immunity of an UTP. The focus is on the sensitivity of the test outcome to poor positioning of the injection device on the cable harness. Indeed, preliminary measurement on canonical wiring structures revealed a more pronounced sensitivity to possible misalignment in the case of TWC rather than BCI setups, which is here investigated by means of a specific set of full-wave numerical simulations and interpreted by the light of simplified circuit models.
机译:借助非屏蔽双绞线(UTP)上的两个设备之间的点对点通信,BroadR-Reach®物理层有可能确保非常高的传输速度。然而,在现代汽车架构的恶劣电磁环境中确保此类高速数据线的抗扰性是一项艰巨的任务,需要针对抗扰性评估进行可重复且可靠的测试程序。这项工作调查并比较了大电流注入(BCi)和管状波耦合器(TWC)技术的性能-目前在高达400 MHz和400 MHz至3 GHz的ISO标准下分别进行了测试- UTP的抗扰性。重点在于测试结果对注射装置在线束上定位不良的敏感性。的确,在TWC而不是BCI设置的情况下,对规范布线结构的初步测量显示出对可能未对准的更明显的敏感性,这里通过一组特定的全波数值模拟进行研究,并通过简化电路来解释楷模。

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