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Coordinated and optimal acceleration and deceleration driving control for multi-axle hydrostatic driving vehicle

机译:多轴静液压驱动车辆的协同优化加减速驱动控制

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This paper mainly deals with the optimal accelerated driving control for multi-axle hydrostatic driving vehicle. Addressed the hydrostatic traveling system to be composed of pump-controlled-parallel-motor, a hierarchical coordinated control structure was proposed by regulating variable displacement pump to improve the acceleration and deceleration performance of vehicle. Furthermore, a first order sliding-mode observer was designed for estimating the road condition and confirmed the optimal slip rate. The numerical simulations on the proposed control algorithm were conducted. The results and simulation evaluation show that the proposed control law can make the vehicle reach to the optimal slip rate and achieve the excellent acceleration and deceleration performance.
机译:本文主要研究多轴静液压驾驶车辆的最优加速驾驶控制。针对由泵控并联电动机组成的静液压行驶系统,提出了一种通过调节可变排量泵来提高车辆的加减速性能的分级协调控制结构。此外,设计了一阶滑模观察器来估计道路状况并确定最佳滑移率。对所提出的控制算法进行了数值模拟。结果与仿真评价表明,所提出的控制规律可使车辆达到最佳滑移率,并具有优良的加减速性能。

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