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Nonlinear control of a continuously variable transmission (CVT)

机译:无级变速器(CVT)的非线性控制

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摘要

Automotive engineers are continuously exploring various engine, transmission, and chassis technologies to increase overall vehicle performance, fuel economy, and safety. One promising powertrain concept is the continuously variable transmission (CVT), which offers a continuum of infinitely variable gear ratios between established minimum and maximum limits. This continuous gear ratio spectrum can increase the overall powertrain efficiency and eliminate the unwanted jerks associated with manual and automatic transmissions. Although basic CVT designs may have difficulty with high torque/low speed requirements, a power split continuously variable transmission configuration offers both fixed gearing and adjustable pulleys to satisfy driving demands. The effective control of the variable radius pulleys allows the designation of engine torque/speed to improve overall system performance for a given operating condition. In this paper, the fundamental components, configuration, and kinematics of a power split CVT will be briefly introduced. The problem of wheel speed (i.e., cruise) control of a CVT equipped vehicle will be considered. An innovative adaptive nonlinear controller will be designed to ensure asymptotic tracking of the desired wheel speed. Representative numerical results are presented and discussed to demonstrate the ability of the integrated CVT and engine controller in tracking the prescribed wheel speed.
机译:汽车工程师正在不断探索各种发动机,变速箱和底盘技术,以提高整体车辆性能,燃油经济性和安全性。一种有前途的动力总成概念是无级变速箱(CVT),它可在既定的最小极限和最大极限之间提供连续的无级变速比。这种连续的传动比范围可以提高整体动力总成效率,并消除与手动和自动变速器相关的不必要的冲击。尽管基本的CVT设计可能难以满足高扭矩/低速要求,但动力分配无级变速箱配置可提供固定齿轮和可调节皮带轮,从而满足驾驶需求。可变半径皮带轮的有效控制允许指定发动机扭矩/速度,以改善给定工况下的整体系统性能。在本文中,将简要介绍功率分配CVT的基本组件,配置和运动学。将考虑配备有CVT的车辆的车轮速度(即,巡航)控制的问题。将设计一种创新的自适应非线性控制器,以确保对所需车轮速度的渐进跟踪。提出并讨论了代表性的数值结果,以证明集成的CVT和发动机控制器跟踪指定车轮速度的能力。

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