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首页> 外文期刊>International Journal of Electric and Hybrid Vehicles >Electronic differential for high-performance electric vehicles with independent driving motors
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Electronic differential for high-performance electric vehicles with independent driving motors

机译:具有独立驱动电机的高性能电动汽车的电子差速器

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摘要

This paper presents a novel electronic differential design for high-performance electric vehicles (EVs) with independent driving motors. The aim of this design is to achieve neutral-steer in intense driving scenarios. The proposed method employs a closed-loop control system that constantly regulates the torque commands sent to the independent driving motors. These commands are generated to tune the torque difference between left and right driving motors at the amount that leads to neutral-steer. Real vehicle parameters and real tyre testing data are employed in extensive simulations. Simulation results demonstrate that the new electronic differential works in principle and can endow the EV with a close-to-neutral steer characteristic, which is of great significance to high-performance vehicles in challenging driving conditions. Also, comparative simulations demonstrate how the proposed method can outperform competing methods in terms of steering performance in various scenarios, while maintaining the dynamic stability of the vehicle.
机译:本文提出了一种新颖的电子差动设计,用于具有独立驱动马达的高性能电动汽车(EV)。该设计的目的是在激烈的驾驶情况下实现中立转向。所提出的方法采用闭环控制系统,该系统不断调节发送给独立驱动电动机的转矩指令。生成这些命令以将左驱动马达和右驱动马达之间的转矩差调整到导致空转的量。在广泛的仿真中采用了真实的车辆参数和真实的轮胎测试数据。仿真结果表明,新型电子差速器可以正常工作,并且可以使电动汽车具有接近中性的转向特性,这对于在挑战性驾驶条件下的高性能汽车具有重要意义。此外,对比仿真表明,在保持车辆动态稳定性的同时,在各种情况下,所提出的方法在转向性能方面如何能优于竞争对手的方法。

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