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Radiated Immunity Test Involving Crosstalk and Enforcing Equivalence With Field-to-Wire Coupling

机译:涉及串扰并通过场线耦合实现等效性的辐射抗扰度测试

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摘要

In this study, a novel test procedure aimed at assessing the radiated immunity of units and subsystems interconnected by wiring harnesses is proposed and experimentally validated. The procedure is based on crosstalk and allows inducing at the terminations of the wiring structure under test the same disturbance that would be induced by field-to-wire coupling, without requiring large and expensive test facilities. This is made possible by resorting to a generator circuit laid parallel and in proximity of the cable under test and fed at the terminations by two RF voltage sources, whose phase shift is suitably controlled. The proposed scheme of equivalence is very general, holding for any direction of incidence and polarization of the impinging electromagnetic field. Also, it involves feeding conditions of the two RF sources that do not depend on the specific terminations of the circuit under test. Accuracy of the proposed equivalence scheme is assessed by resorting to an automatically controlled test setup involving a simple wiring structure and terminal networks. Eventually, feasibility and practicality of the associated test procedure are discussed.
机译:在这项研究中,提出了一种新颖的测试程序,旨在评估通过线束互连的单元和子系统的辐射抗扰性,并进行了实验验证。该过程基于串扰,并允许在被测布线结构的终端处感应出由场-线耦合所引起的相同干扰,而无需大型且昂贵的测试设备。这可以通过采用与被测电缆平行且靠近被测电缆的发电机电路来实现,该发电机电路由两个RF电压源馈入终端,两个RF电压源的相移得到适当控制。拟议的等效方案非常笼统,可适应入射电磁场的任何入射方向和极化。此外,它涉及两个RF源的供电条件,这些条件不取决于被测电路的特定终端。通过采用涉及简单布线结构和终端网络的自动控制测试装置,可以评估提出的等效方案的准确性。最终,讨论了相关测试程序的可行性和实用性。

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