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Seamless dual brake transmission for electric vehicles: Design, control and experiment

机译:电动汽车无缝双制动变速器:设计,控制和实验

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Transmission is one of the crucial elements of a motor vehicle's driveline that affects efficiency and dynamic performance of the vehicle. This paper studies the dynamical modeling, controller design, and experimental validation of a two-speed transmission for electric vehicles which has a specification of seamless gear shifting. The transmission incorporates a two-stage planetary gear set with common sun and common ring gears and two braking mechanisms to control the flow of power. The dynamical modeling of the driveline of an electric vehicle equipped with such a transmission is derived by exploiting the torque balance and virtual work principle. Thereafter, the Pontryagin Minimum Principle is applied to design an optimal shifting controller. This controller keeps the output speed and the output torque of the driveline constant during the gear shifting operation while minimizing the shifting time and the dissipation of energy caused by the internal brakes. Since the optimal control law provided by the Minimum Principle is open loop, a backstepping controller is designed to provide a stabilizing feedback law based on the optimal control inputs. Simulation and experimental results demonstrate the ability of the proposed transmission to exhibit smooth shifting without excessive oscillations in the output speed and torque. (C) 2015 Elsevier Ltd. All rights reserved.
机译:变速箱是影响汽车效率和动态性能的汽车传动系统的关键要素之一。本文研究了电动汽车两速变速器的动力学建模,控制器设计和实验验证,该变速器具有无缝换档的规范。变速箱包括一个带有普通太阳轮和普通环形齿轮的两级行星齿轮组,以及两个用于控制动力流的制动机构。通过利用扭矩平衡和虚拟工作原理,得出了配备有这种变速器的电动汽车的传动系统的动力学模型。此后,采用Pontryagin最小原理设计最佳变速控制器。该控制器在换档操作期间保持传动系统的输出速度和输出扭矩恒定,同时将换挡时间和内部制动器引起的能量耗费降至最低。由于“最小原理”提供的最佳控制律是开环的,因此设计了一个反推控制器,以基于最佳控制输入提供稳定的反馈律。仿真和实验结果证明了所提出的变速器能够表现出平稳的换档能力,而不会在输出速度和扭矩上产生过多的振荡。 (C)2015 Elsevier Ltd.保留所有权利。

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