论文标题
带有双离合器传输的静静力机械移动机的新型算法
A novel Algorithm for Hydrostatic-mechanical Mobile Machines with a Dual-Clutch Transmission
论文作者
论文摘要
在较低的工作速度条件下,使用静液压传输的移动机非常有效,但在较高的运输速度下的能力较低。为了提高整体效率,我们通过将静液压传输与双离合器传输(DCT)结合起来改善了动力总成设计。与其他机械变速箱相比,DCT避免了转移过程中扭矩传输的中断,而不会牺牲更高的传输效率。但是,在转移过程中有一些不稳定的扭矩传输的问题,并且在换档结束时发生了过多的扭矩下降,这会导致舒适性较差。为了增强动力总成设计的新结构可能性的性能,我们在变化过程中为电动机扭矩和离合器扭矩设计了一种新颖的控制策略。控制器的任务是跟踪目标驱动扭矩,并尽快完成齿轮移动,并使用可接受的平滑性要求。在控制器设计的过程中,特定的控制算法首先是为10吨车轮装载机设计的。基于模型的仿真已验证了控制效果。结果,使用离合器和电动机扭矩控制以实现光滑转移过程的控制策略是可行的,因为驱动扭矩已得到很好的跟踪,并且不需要高度动态的执行器。此外,只设计了两个校准参数来系统地调整控制性能。新颖的控制策略是针对其他尺寸不同的移动机器的推广。
Mobile machines using a hydrostatic transmission is highly efficient under lower working-speed condition but less capable at higher transport velocities. To enhance overall efficiency, we have improved the powertrain design by combining a hydrostatic transmission with a dual-clutch transmission (DCT). Compared with other mechanical gearboxes, the DCT avoids the interruption of torque transmission in the process of shifting without sacrificing more transmission efficiency. However, there are some problems of unstable torque transmission during the shifting process, and an excessive torque drop occurring at the end of the gear shift, which result in a poor drive comfort. To enhance the performance of the novel structural possibility of powertrain design, we designed a novel control strategy for the motor torque and the clutch torques during the shifting process. The controller's task is tracking the target drive torque and completing the gear shift as quickly as possible with acceptable smoothness requirements. In the process of the controller design, a specific control algorithm is firstly designed for a 10 ton wheel loader. The model-based simulation has validated the control effect. As a result, the control strategy employing clutch and motor torque control to achieve a smooth shifting process is feasible since drive torque is well tracked, and highly dynamical actuators are not required. Furthermore, only two calibration parameters are designed to adjust the control performance systematically. The novel control strategy is generalized for other mobile machines with different sizes.