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Effect of handling characteristics on minimum time cornering with torque vectoring

机译:操纵特性对转矩矢量最小转弯时间的影响

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摘要

In this paper, the effect of both passive and actively-modified vehicle handling characteristics on minimum time manoeuvring for vehicles with 4-wheel torque vectoring (TV) capability is studied. First, a baseline optimal TV strategy is sought, independent of any causal control law. An optimal control problem (OCP) is initially formulated considering 4 independent wheel torque inputs, together with the steering angle rate, as the control variables. Using this formulation, the performance benefit using TV against an electric drive train with a fixed torque distribution, is demonstrated. The sensitivity of TV-controlled manoeuvre time to the passive understeer gradient of the vehicle is then studied. A second formulation of the OCP is introduced where a closed-loop TV controller is incorporated into the system dynamics of the OCP. This formulation allows the effect of actively modifying a vehicle's handling characteristic via TV on its minimum time cornering performance of the vehicle to be assessed. In particular, the effect of the target understeer gradient as the key tuning parameter of the literature-standard steady-state linear single-track model yaw rate reference is analysed.
机译:本文研究了具有四轮扭矩矢量(TV)功能的车辆的被动和主动修改的车辆操纵特性对最小时间操纵的影响。首先,寻求与任何因果控制定律无关的基准最优电视策略。最初将4个独立的车轮扭矩输入以及转向角比率作为控制变量来制定最佳控制问题(OCP)。使用该公式,证明了使用TV对抗具有固定扭矩分布的电动传动系统的性能优势。然后研究了电视控制的操纵时间对车辆被动转向不足梯度的敏感性。引入了OCP的第二种形式,其中将闭环电视控制器并入OCP的系统动力学中。该公式允许通过TV主动修改车辆的操纵特性对要评估的车辆的最小时间转弯性能的影响。特别地,分析了目标转向不足梯度作为文献标准稳态线性单轨模型偏航角速度参考的关键调整参数的影响。

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