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Design of Single Acting Pulley Actuator (SAPA) Continuously Variable Transmission (CVT)

机译:单作用皮带轮执行器(SAPA)无级变速器(CVT)的设计

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摘要

The design of Single Acting Pulley Actuator (SAPA) Continuously Variable Transmission (CVT) utilizes combinations of DC motor system, gear reducers and power cam mechanisms to actuate primary movable pulley sheaves on the transmission shaft. The secondary pulley supported by spring provides a belt clamping force to prevent slips, while the secondary controls the rubber v-belt from slipping. Since the methods of controlling these are similar, this paper only discusses the primary part. The servomotor regulates the axial movement of primary movable pulley sheaves to shift the rubber v-belt placed between the sheaves, and change the belt-pulley contact radius. Changing this contact radius means changing the CVT ratio. Computer simulation results are presented to demonstrate the effectiveness of the proposed PD controller. The research outcome gives a significant result to complete 75.08° rotation of the CAM from lower gear ratio to top gear ratio is less than 6.79 sec, with minimum error and less overshoot with a manual PD tuning contribution to the field of DC motor based electro-mechanical CVT control system.
机译:单作用皮带轮作动器(SAPA)的无级变速器(CVT)的设计利用直流电动机系统,齿轮减速器和动力凸轮机构的组合来致动传动轴上的主要可动皮带轮。弹簧支撑的次级皮带轮提供皮带夹紧力以防止打滑,而次级皮带轮控制橡胶三角皮带打滑。由于控制这些方法的方法相似,因此本文仅讨论主要部分。伺服电动机调节主要可移动滑轮槽轮的轴向运动,以移动放置在槽轮之间的橡胶三角皮带,并改变皮带轮的接触半径。更改此接触半径意味着更改CVT比率。给出的计算机仿真结果证明了所提出的PD控制器的有效性。研究结果给出了一个重要的结果,即完成CAM从低速传动比到最高传动比的旋转过程不到75.08°,小于6.79秒,并且通过手动PD调整对基于直流电动机的电动变速箱领域做出了贡献,从而将误差降到最低,并减少了过冲。机械CVT控制系统。

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