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Integrated Control of Hydromechanical Variable Transmissions

机译:流体机械变速器的集成控制

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摘要

A hydromechanical variable transmission (HMT) has advantages of continuous variation and high efficiency. So it is one of the ideal transmissions of heavy vehicles. The continuous speed varying process involves speed governing in range and range shift. Integrated control strategy of the HMT is proposed in this paper. The algorithm of the asymmetric saturated incremental proportional integral derivative (PID) speed control strategy in range and range shift conditions are derived. And this paper presents the range shift logic and range shift control strategies. A controller model is built in Matlab Simulink and cosimulated with the model of vehicle equipped with a two-range HMT. The HMT prototype hardware-in-the-loop simulation (HILS) platform of the integrated control strategy is built. The HILS results show that the range shift process is smooth and speed fluctuation does not happen. In the throttle stable stage, the engine speed is adjusted to the near optimal speed, and its change rules are in accordance with simulation results. The integrated control strategy is reasonable.
机译:流体机械变速器(HMT)具有连续变化和高效率的优点。因此,它是重型车辆的理想变速箱之一。连续速度变化过程涉及控制范围和范围偏移的速度。本文提出了HMT的集成控制策略。推导出在范围和范围换档条件下的非对称饱和增量比例积分衍生物(PID)速度控制策略的算法。本文介绍了范围移位逻辑和范围换档控制策略。控制器模型内置于Matlab Simulink,并用配备有双距离HMT的车辆模型而构成。构建了集成控制策略的HMT原型硬件型仿真(HIL)平台。 HILS结果表明,范围换档过程是平滑的,不会发生速度波动。在节气门稳定阶段,发动机速度调节到近最佳速度,其变化规则符合仿真结果。综合控制策略是合理的。

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