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Optimisation of the power-cycle hydro-mechanical parameters in a continuously variable transmission designed for agricultural tractors

机译:用于农业拖拉机的无级变速器中的功率循环水电参数优化

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摘要

Power transmission is a critical component of agricultural tractor designs and more demanding requirements have been placed on transmissions due to the complexities of their operational environments. However, economic performance is usually sacrificed in favour of using high-powered engines to satisfy the dynamic performance requirements related to power. In this study, a new power-cycle hydro-mechanical continuously variable transmission (PCHMCVT) device is proposed for use in agricultural tractors. The effects of various structural parameters on the system performance is analysed, and an evaluation index for the performance of the PCHMCVT performance is proposed. A comprehensive examination of speed regulation performance, economic performance, and dynamic performance are performed. A multi-objective optimisation design numerical model is established, which utilises the NSGA-II multi-objective genetic algorithm to optimise the transmission. Finally, the feasibility of the optimisation results is verified by comparing and analysing the speed ratios, torque ratios and efficiency characteristics of the trans- mission before and after optimisation. This study provides an optimised design method for the selection of the structural parameters of the PCHMCVT to ensure competent overall performance. (C) 2019 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:电力传输是农业拖拉机设计的关键组成部分,并且由于其运营环境的复杂性而在变速器上放置了更高要求的要求。然而,通常牺牲经济性能,有利于使用高动力发动机来满足与电力相关的动态性能要求。在本研究中,提出了一种新的动力循环水力 - 机械连续可变变速器(PCHMCVT)装置,用于农业拖拉机。分析了各种结构参数对系统性能的影响,提出了用于PCHMCVT性能的评估指标。进行速度调节性能,经济性能和动态性能的全面检查。建立了多目标优化设计数值模型,利用NSGA-II多目标遗传算法优化传输。最后,通过比较和分析优化之前和之后的转移任务的速度比率,扭矩比和效率特性来验证优化结果的可行性。本研究提供了一种优化的设计方法,用于选择PCHMCVT的结构参数,以确保能力的整体性能。 (c)2019年IAGRE。 elsevier有限公司出版。保留所有权利。

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