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Current distribution in shielded cable-connector systems for power transmission in electric vehicles

机译:电动汽车电力传输电缆连接系统中的电流分布

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With the electrification of vehicle propulsion systems, shielded cables were introduced for delivering the power from HV-battery to inverter and/or from inverter to three-phase motor. On the one hand the shield should improve EMC behaviour, on the other hand the shield should protect passengers and service staff from the high voltage. While in typical communication application of shielded cables the shield carries the return current from the inner conductor and the current sum is zero, the automotive power cable employs a second shielded, and, for three phase applications, a third shielded cable, for the return currents. There is no current injection into the shield. Shield currents are mainly induced by inductive coupling. Knowing the shield currents is essential for evaluating the common mode current and thus the relevant fields caused by a cable configuration. In this paper an analytic approach for estimating the current distribution in and the fields from a shielded cable system for EV for low frequencies is presented. With this method typical systems are calculated and discussed regarding the common mode currents and the magnetic fields.
机译:利用车辆推进系统的电气化,引入屏蔽电缆,用于将电力从HV电池输送到逆变器和/或从逆变器到三相电动机。一方面,盾牌应该改善EMC行为,另一方面,盾牌应保护乘客和服务人员免受高电压。虽然在屏蔽电缆的典型通信应用中,屏蔽屏蔽来自内导体的返回电流,并且电流总和为零,汽车电力电缆采用第二个屏蔽,并且对于三相应用,第三屏蔽电缆,用于返回电流。屏蔽中没有电流注入。屏蔽电流主要由电感耦合引起。了解屏蔽电流对于评估共模电流并因此是由电缆配置引起的相关领域是必不可少的。本文介绍了一种用于估计电流分布的分析方法,用于低频为EV的屏蔽电缆系统的电流分布。利用该方法,计算和讨论关于共模电流和磁场的典型系统。

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