首页> 外文期刊>International Journal of Automotive Technology >EVALUATION OF PREVIEW G-VECTORING CONTROL TO DECELERATE A VEHICLE PRIOR TO ENTRY INTO A CURVE
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EVALUATION OF PREVIEW G-VECTORING CONTROL TO DECELERATE A VEHICLE PRIOR TO ENTRY INTO A CURVE

机译:评估G车辆进入曲线之前的减速控制的评估

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摘要

This paper describes the development of the braking assistance system based on a "G-Vectoring" concept. The present work focuses in particular on "Preview G-Vectoring Control" (PGVC), which is based on the "G-Vectoring Control" (GVC) scheme. In GVC, the longitudinal-acceleration control algorithm is based on the actual lateral jerk. PGVC decelerates a vehicle before it enters a curve, and is based on a new longitudinal-acceleration control algorithm which uses predicted and actual lateral jerk. Using the predicted lateral jerk makes it possible to decelerate the vehicle prior to curve entry. This deceleration can emulate a driver's deceleration as the vehicle approaches a curve entry. PGVC is based on such deceleration algorithms and enables automatic deceleration similar to the action of a driver. It is thus possible to significantly improve the driver's feeling when this system is activated. Driving tests with this new control system on snowy-winding course confirmed that the automatic brake control quality improved considerably compared to manual driver control considering both lap time and ride quality. These results indicate that PGVC can be a useful braking assistance system not only to improve the driver's handling performance but also to reduce the brake-task during driving on winding roads.
机译:本文介绍了基于“ G矢量”概念的制动辅助系统的开发。本工作特别关注基于“ G矢量控制”(GVC)方案的“预览G矢量控制”(PGVC)。在GVC中,纵向加速度控制算法基于实际的横向加速度。 PGVC在车辆进入弯道之前使其减速,并且基于新的纵向加速度控制算法,该算法使用预测的和实际的横向加速度。使用预测的横向加速度,可以在弯道进入之前使车辆减速。当车辆接近弯道入口时,该减速度可以模拟驾驶员的减速度。 PGVC基于此类减速算法,并能够实现类似于驾驶员动作的自动减速。因此,当该系统被激活时,可以大大改善驾驶员的感觉。使用这种新的控制系统在雪地行驶过程中进行的驾驶测试证实,与手动驾驶员控制相比,考虑到单圈时间和行驶质量,自动制动控制质量大大提高。这些结果表明,PGVC可以用作有用的制动辅助系统,不仅可以改善驾驶员的操纵性能,而且可以减少在蜿蜒道路上行驶时的制动任务。

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