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The Influence of Network Impedance on Conducted Disturbances Within the High-Voltage Traction Harness of Electric Vehicles

机译:电动汽车高压牵引线束中网络阻抗对传导干扰的影响

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摘要

Currently, automotive traction systems are increasingly being revised from combustion engine drives to electric propulsion. The high power cables of electric vehicles are routed close to various communication, sensor, or control units. This circumstance results in a tightened challenge for the developing engineers, who need to ensure the electromagnetic compatibility of these miscellaneous and adjacent systems. A trial-and-error approach in the development process of electromagnetic interference filters can only be avoided if the influence of the network impedances within the high voltage traction harness on conducted RF disturbances is known. This contribution presents the current methodology of determining the conducted emissions of power inverters for electric driven cars. It highlights the differences between the traditional low-voltage cable wiring and novel high-voltage traction harnesses, and their impact on the network impedances. An adaption of the line impedance stabilization networks used recently to the characteristic impedance of the high-voltage cables applied shows the influence of termination mismatch on conducted emissions within the traction harness. High-voltage components employed in a car are usually supplied by a traction accumulator battery, which acts as transmission line termination. The influence of a battery's input impedances on disturbances within a component level EMC test setup is shown.
机译:当前,汽车牵引系统越来越多地从内燃机驱动改为电动推进。电动汽车的大功率电缆的布线靠近各种通讯,传感器或控制单元。这种情况给开发工程师带来了严峻的挑战,他们需要确保这些杂项和相邻系统的电磁兼容性。只有在已知高压牵引线束中的网络阻抗对传导的RF干扰有影响的情况下,才能避免电磁干扰滤波器开发过程中的反复试验方法。该文稿介绍了确定电动汽车功率逆变器传导排放的当前方法。它强调了传统低压电缆布线与新型高压牵引线束之间的差异,以及它们对网络阻抗的影响。最近使用的线路阻抗稳定网络与所应用的高压电缆的特征阻抗的匹配表明,终端失配对牵引线束中的传导辐射有影响。汽车中使用的高压组件通常由牵引式蓄电池供电,该蓄电池用作传输线的终端。显示了电池输入阻抗对组件级EMC测试设置中的干扰的影响。

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