Active electromagnetic damping for lightweight electric vehicles

Alista Fow, M. Duke
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引用次数: 1

Abstract

Due to the low weight of most current electric vehicles, the effectiveness of commercial passive dampers is reduced when compared to current production automobiles. Active dampers allow for a significant reduction in the amount of road signal that affects the passenger body. However current active hydraulic dampers tend to be heavy and to have a power consumption that precludes their use in electric vehicles. By use of a linear electromagnetic element it is possible to create an active damper that has enough authority to provide active damping with a fraction of the weight and power consumption of a hydraulic system. A computer model of an active electromagnetic damper was constructed and the results were compared to a physical prototype. This verified the effectiveness of the damper and the low power consumption. This computer model was then scaled up for the simulation of a real world quarter car model. This simulation demonstrated that the use of the active linear electromagnetic damper was more effective at all frequencies when compared to an ideal passive damper. It was also demonstrated that the active electromagnetic damper had a similar mass to a passive damper and had a power consumption of more than an order of magnitude less than a comparable active hydraulic damper.
轻型电动汽车的主动电磁阻尼
由于目前大多数电动汽车的重量较轻,与目前生产的汽车相比,商用被动阻尼器的有效性降低了。主动阻尼器允许显著减少影响乘客身体的道路信号量。然而,目前的主动液压阻尼器往往是沉重的,并有一个电力消耗,排除了他们在电动汽车的使用。通过使用线性电磁元件,可以创建一个主动阻尼器,该阻尼器具有足够的权威,以液压系统的一小部分重量和功耗提供主动阻尼。建立了有源电磁阻尼器的计算机模型,并与实物样机进行了比较。这验证了阻尼器的有效性和低功耗。然后,这个计算机模型被按比例放大,以模拟真实世界的四分之一汽车模型。该仿真表明,与理想的被动阻尼器相比,主动线性电磁阻尼器在所有频率下的使用都更有效。研究还表明,主动电磁阻尼器具有与被动阻尼器相似的质量,并且功耗比可比的主动液压阻尼器低一个数量级以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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