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Design of robust vehicle launch control system

机译:强大的车辆起步控制系统设计

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This paper presents a robust algorithm for vehicle start-up from a stop (commonly referred to as "vehicle launch") using a microprocessor controlled friction clutch. The design applies an "M-exclusion" concept for achieving guaranteed robust tracking and stability using quantitative feedback theory (QFT). The analytical design technique is carried out in the complex plane and improves on the conventional graphical QFT design. An inner control loop achieves a second-order response within specified tolerances for the driveline and clutch. An outer loop develops a reference signal for the inner loop to achieve smooth lockup. A feedforward signal derived from engine acceleration prevents both over-speed and speed droop in the engine. The control algorithm was programmed into a microprocessor and tested in a heavy duty truck. The truck was driven by experienced drivers, who rated the smoothness and responsiveness of the launch better than achievable with a manual clutch.
机译:本文提出了一种鲁棒的算法,该算法使用微处理器控制的摩擦离合器从停车位(通常称为“车辆启动”)启动车辆。该设计采用“ M排除”概念,以使用定量反馈理论(QFT)实现有保证的鲁棒跟踪和稳定性。分析设计技术是在复杂平面中进行的,并且对常规的图形QFT设计进行了改进。内部控制回路在传动系统和离合器的指定公差内实现了二阶响应。外环为内环产生参考信号,以实现平滑锁定。由发动机加速度产生的前馈信号可防止发动机超速和速度下降。控制算法已编程到微处理器中,并在重型卡车中进行了测试。卡车由经验丰富的驾驶员驾驶,与手动离合器相比,他们对起步的平稳性和响应性的评价更好。

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