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Improving the transmission efficiency of wireless power trans-fer systems in electric vehicles by using magnetoplated aluminum pipes.

机译:通过使用磁化铝管提高电动汽车中无线电力传输系统的传输效率。

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Wireless power transfer (WPT) technology is becoming increasingly popular because it enables the transmission of electrical energy without the use of connecting wires, which makes the transmission process convenient and safe. Currently, researchers are in the process of developing transmission powers greater than 3 kW for charging electric vehicles (EVs). Some car manufacturers have even started making prototypes using the WPT system. The charging operation tends to be much better in the WPT system because there are no direct electrical connections. The car needs only to be parked at the charging station; subsequently, the WPT system automatically carries out the electrical connection. In the WPT system for EVs, the devices typically use the electromagnetic induction produced between a pair of coils; one coil is for transmitting power, and the other coil is for receiving power. To improve the electromagnetic induction efficiency at high frequencies in the range of 81-90 kHz, a Litz wire of 1000 or more strands is used to reduce the AC loss. The use of a Litz wire reduces the AC impedance resulting from the proximity effect and increases the Q value. Therefore, Litz wires are used in almost all high-power WPT coils [1]. Litz wires can improve performance because they have a greater number of strands than solid wires; they also have low diameters. These attributes, however, also increase the cost of the Litz wire coils. Using a solid wire coil instead of a Litz wire will reduce costs, but the associated high-frequency losses will reduce the efficiency of the coil. Therefore, in this paper, we propose a magnetoplated aluminum pipe (MAP) with a special magnetic layer to improve the transmission efficiency. As compared with the solid wire, the MAP is very light and cheap. Therefore, it is possible to replace the Litz wire with a MAP.
机译:无线功率传输(WPT)技术正变得越来越流行,因为它可以在不使用连接线的情况下传输电能,从而使传输过程变得方便和安全。当前,研究人员正在开发用于给电动汽车(EV)充电的大于3 kW的传输功率。一些汽车制造商甚至已经开始使用WPT系统制造原型。 WPT系统中的充电操作往往会更好,因为没有直接的电气连接。只需将汽车停在充电站即可;随后,WPT系统自动进行电气连接。在用于电动汽车的WPT系统中,设备通常使用在一对线圈之间产生的电磁感应。一个线圈用于发射功率,另一个线圈用于接收功率。为了提高在81-90 kHz范围内的高频下的电磁感应效率,使用1000股或更多股的Litz导线来减少AC损耗。利兹线的使用减少了由于邻近效应而产生的交流阻抗,并增加了Q值。因此,几乎所有大功率WPT线圈都使用Litz导线[1]。利兹线的绞线数量比实心线多,因此可以提高性能。它们的直径也小。然而,这些属性也增加了利兹线圈的成本。使用实心线材线圈代替李兹线将降低成本,但是相关的高频损耗将降低线圈的效率。因此,在本文中,我们提出了一种具有特殊磁性层的磁化铝管(MAP),以提高传输效率。与实心线相比,MAP非常轻便且便宜。因此,可以用MAP代替Litz导线。

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