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Cruise control with adaptation and wheel torque constraints for improved fuel economy

机译:具有自适应和车轮扭矩约束的巡航控制系统,可提高燃油经济性

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Cruise controllers are used to automatically control the speed of motor vehicles. In order to maintain a desired vehicle speed the controller takes over the throttle in a cruise control system which proves particularly useful for long drives. Adaptive Cruise Control (ACC) systems have additional capabilities such as automatic braking or dynamic set-speed type controls and hence can accommodate changes in cruise speed required to adapt to changing road conditions. We propose that further improvement in fuel economy can be achieved by considering the vehicle's longitudinal dynamics as an input-constrained system and the wheel torque as the corresponding constrained input. We effectively address the resulting input saturation nonlinearity by employing our adaptive anti-windup compensator design. Simulation results are used to compare the performance of the original cruise control system allowing for the full-range of wheel torque and the ACC system where the wheel torque is forced to remain within the user-defined limits for improved fuel economy.
机译:巡航控制器用于自动控制汽车的速度。为了维持期望的车速,控制器接管了巡航控制系统中的油门,事实证明这对于长距离行驶特别有用。自适应巡航控制(ACC)系统具有其他功能,例如自动制动或动态设定速度类型控制,因此可以适应适应不断变化的路况所需的巡航速度变化。我们建议,通过将车辆的纵向动力学作为输入约束系统,并将车轮扭矩作为相应的约束输入,可以进一步提高燃油经济性。通过采用自适应抗饱和补偿器设计,我们有效地解决了产生的输入饱和非线性问题。仿真结果用于比较原始巡航控制系统(允许车轮扭矩的整个范围)和ACC系统的性能,在ACC系统中,车轮扭矩被迫保持在用户定义的范围内,以提高燃油经济性。

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