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首页> 外文期刊>International Journal of Automotive Technology >ACTIVE APPROACH TO ELECTRONIC STABILITY CONTROL FOR FRONT-WHEEL DRIVE IN-WHEEL MOTOR ELECTRIC VEHICLES
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ACTIVE APPROACH TO ELECTRONIC STABILITY CONTROL FOR FRONT-WHEEL DRIVE IN-WHEEL MOTOR ELECTRIC VEHICLES

机译:前轮驱动轮毂式电动汽车的电子稳定性控制的主动方法

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摘要

Recently, motion control for electric vehicles has gradually gained respect in automotive society due to increased strictness of vehicle safety evaluation over time. Electronic Stability Control (ESC) is the kernel technology, which refers to two-dimensional motion stabilization. Many investigations have demonstrated that Direct Yaw-moment Control (DYC) is an effective and practical way to carry out the ESC of electric vehicles. However, based on the drive train of conventional steering, conventional approaches are using braking to achieve the DYC. This paper proposes a new ESC based on the construction of DYC. The presented approach is based on a core of individual traction control measures for propulsion wheels. This approach not only constrain the longitudinal slip, but also ensure the performance and the effectiveness of two-dimensional motion control. With a proper control, the vehicle can be maintained to a nearly neutral-steering under high speed turning. Hence, the vehicle's dynamic stability can be enhanced under aggressive driving by yaw-moment control. Evaluation of the entire control system is performed by well-acknowledged software, which demonstrates that the vehicle's dynamic stability can be enhanced under aggressive driving by the proposed approach.
机译:近来,由于随着时间的流逝对车辆安全性评估的严格性日益提高,用于电动车辆的运动控制已逐渐在汽车社会中受到重视。电子稳定控制(ESC)是核心技术,它涉及二维运动稳定。许多研究表明,直接偏航力矩控制(DYC)是执行电动汽车ESC的有效方法。然而,基于常规转向的传动系,常规方法使用制动来实现DYC。本文在DYC的基础上提出了一种新的电调。提出的方法基于推进轮的单个牵引力控制措施的核心。这种方法不仅可以限制纵向滑移,而且可以确保二维运动控制的性能和有效性。通过适当的控制,车辆可以在高速转弯时保持接近空档的转向。因此,通过偏航力矩控制,可以在激进驾驶中提高车辆的动态稳定性。整个控制系统的评估是通过公认的软件执行的,这表明通过所提出的方法可以在激进驾驶条件下提高车辆的动态稳定性。

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