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IMPROVING THE ENGAGEMENT SMOOTHNESS THROUGH MULTI-VARIABLE FRICTIONAL MAP IN AUTOMATED DRY CLUTCH CONTROL

机译:通过多变量摩擦贴图在自动干式离合器控制中提高接合流畅度

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An Automated Manual Transmission (AMT) is directly derived from a manual one through the integration of actuators; then, development and production costs are generally lower than other automatic transmissions, while the reliability and durability are at highest level. For high class sport cars, vehicle dynamic performances and driving quality can be strongly improved with respect to automatic transmissions [1]. AMTs systems are generally constituted by a dry or wet clutch assembly and a multi-speed gearbox, both equipped with electro-mechanical or electro-hydraulic actuators, which are driven by a control unit, the transmission control unit (TCU). The operating modes of AMTs are usually two: semiautomatic or fully automatic. In both cases, after the gear shift command, the TCU manages the shifting steps according to current engine regime, driving conditions and selected program. In this transmission type the quality of the vehicle propulsion as perceived by the driver is largely dependent on the quality of the control strategies. Furthermore, sensitivity analyses on control schemes for AMTs have shown that uncertainties in clutch torque characteristic can severely affect the performance of the clutch engagement: modeling in detail the torque transmitted by the specific clutch architecture is a crucial issue in order to design robust engagement control strategies [2, 3 and 4]. This paper aims at investigating the engagement performance of an actuated dry clutch by taking into account the inference of the pressure on the facing materials and the sliding speed. In fact, according to literature outcomes [5], the friction coefficient after a first rising behavior with the sliding speed shows an asymptotic value for a typical clutch facing; the same material exhibits a nearly linear dependence of the friction coefficient on the pressure. The simulations consider: reduced-order dynamic system for simulation of passenger car driveline, control algorithm, experimental maps of the n-D clutch transmission characteristic, and gear shift maneuvers in different operating conditions. The outcome of this analysis could provide valuable issues for designers of automated clutches and control engineers to overcome the well known poor engagement performances of open loop motion strategy of the throwout bearing where cost reason and complexity don't permit the use of displacement sensor.
机译:自动手动传输(AMT)通过执行器的集成直接从手动中导出;然后,开发和生产成本通常低于其他自动变速箱,而可靠性和耐用性在最高水平。对于高级跑车,相对于自动变速箱,可以强烈改善车辆动态性能和驾驶质量[1]。 AMTS系统通常由干燥或湿法离合器组件和多速齿轮箱构成,两种配备有由控制单元驱动的机电或电动液压致动器,传输控制单元(TCU)。 AMT的操作模式通常是两个:半自动或全自动。在这两种情况下,在换档命令之后,TCU根据当前发动机状态,驾驶条件和所选程序管理变速步骤。在这种传动类型中,驾驶员所感知的车辆推进的质量在很大程度上取决于控制策略的质量。此外,AMTS对控制方案的灵敏度分析表明离合器扭矩特性中的不确定性会严重影响离合器接合的性能:详细建模由特定离合器架构传输的扭矩是一个重要的问题,以便设计稳健的接合控制策略[2,3和4]。本文旨在通过考虑面对材料的压力和滑动速度的推动来研究致动的干离合器的接合性能。实际上,根据文献结果[5],在具有滑动速度的第一上升行为之后的摩擦系数表示典型的离合器面向的渐近值;相同的材料表现出摩擦系数对压力的几乎线性依赖性。模拟考虑:用于仿真乘用车传动系仿真,控制算法,N-D离合器变速器特性的实验图,以及不同操作条件的齿轮换档机动的减少动态系统。该分析的结果可以为自动离合器和控制工程师设计人员提供有价值的问题,以克服挖出轴承的开放环运动策略的众所周知的不良啮合性能,其中成本原因和复杂性不允许使用位移传感器。

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