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Simulation of components of a power shuttle transmission system for an agricultural tractor

机译:农用拖拉机动力梭式传动系统组件的仿真

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The usage of tractors is widely extended to various non-agricultural and construction applications like with front end loaders, dozers, backhoe, etc. Tractors which are predominantly used in front end loader application requires frequent shifting of gear due to repetitive fore and aft travel requirements of the vehicle. In this application, tractors usually move forward and reverse direction at the same speed within a short duration by using a mechanical shuttle, synchro shuttle or by power shuttle transmission. This research article presents an idea on the simulation of the power shuttle transmission system of an agricultural tractor. A model of the individual component of power shuttle transmission system has been developed and integrated, to make it as a whole vehicle model, using MATLAB as a simulation platform. The model has been used to study the proportional valve characteristic, vehicle shift time and motion inversion time of modelled tractor and comparison was made between actual and simulated results. The model was validated with the help of an instrumented test tractor. The findings indicated that the time required to develop required actual system pressure was 1.85 s whereas the simulated time was 3.1 s which was optimized to 1.94 s. The simulated shift time was 5 s which was optimized to 3.1 s. Similarly the actual and simulated motion inversion time of the tractor was 6.4 s and 10 s. The modification in the model was done to bring the resemblance between actual and simulated results by providing the actual simulation environment. Thus the simulation study presented here may be beneficial in the design and simulation of other types of power transmission systems used in the tractors. (C) 2015 Elsevier B.V. All rights reserved.
机译:拖拉机的用途已广泛扩展到各种非农业和建筑应用中,例如前端装载机,推土机,反铲等。主要用于前端装载机的拖拉机由于重复的前后行程要求而需要频繁换档的车辆。在这种应用中,拖拉机通常通过使用机械往复运动,同步往复运动或动力往复运动在短时间内以相同的速度向前和向后移动。这篇研究文章提出了一种模拟农用拖拉机的动力传递系统的想法。使用MATLAB作为仿真平台,已经开发并集成了动力往返传输系统各个组件的模型,以使其成为整个车辆模型。该模型用于研究模型拖拉机的比例阀特性,换档时间和运动反转时间,并与实际结果进行了比较。该模型在仪器测试拖拉机的帮助下进行了验证。研究结果表明,开发所需的实际系统压力所需的时间为1.85 s,而模拟时间为3.1 s,最优化为1.94 s。模拟的换档时间为5 s,最优化为3.1 s。同样,拖拉机的实际和模拟运动反转时间分别为6.4 s和10 s。通过提供实际的仿真环境,对模型进行了修改,以使实际结果与仿真结果具有相似性。因此,此处介绍的仿真研究可能对拖拉机中使用的其他类型的动力传输系统的设计和仿真有所帮助。 (C)2015 Elsevier B.V.保留所有权利。

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