Increasing the Quality of Transient Processes in the Vehicle Transmission

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
A. Taratorkin, V. Derzhankii, I. Taratorkin
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Abstract

The paper shows results of an experimental and theoretical study of dynamic processes in the vehicle transmission after kinematic alignment of elements during gearshifts. The purpose of the research is increasing the quality of transient processes in the vehicle transmission. Applying an analysis of experimental results obtained through looking into dynamics of a 3-ton vehicle transmission and studying literature sources it was established that dynamic loading of the transmission after the kinematic stage of shifting (i. e. synchronizing speeds of driving and driven elements in the gearbox) is influenced by oscillations which are in the single-node mode. Solving the task of increasing transient processes is achieved by applying a method of control power redistribution. By employing simulation models a number of methods were used to regulate power redistribution. Results of computations made it possible to determine that the efficiency of power redistribution are closely related to initial conditions of the process under the study. In the progress of the research a method for identifying the initial conditions was developed. This method is based determining signatures of the torque and its derivatives. In accordance with the research results it turned out that it is appropriate to apply the ZVD (zero vibration derivation) algorithm of power redistribution for low gears (below 4th) from point of view achieving better overshoot and robustness characteristics and a satisfactory response rate level. For higher gears it is recommended that the Ramp algorithm (linear increase in the control input) be used for the cases when the response rate is not longer than period of the single-node mode of oscillations occurring in the dynamic system during a gear shift. Application of the proposed algorithms allows to bring down dynamic loading of the transmission and also to improve the comfort in vehicles.
提高车辆变速器瞬态过程的质量
本文对换挡过程中各元件运动校直后的车辆传动动力学过程进行了实验和理论研究。研究的目的是提高车辆变速器瞬态过程的质量。通过对某3吨汽车变速器动力学试验结果的分析和文献资料的研究,确定了变速器在换挡运动阶段(即变速箱内驱动元件和从动元件同步速度)后的动载荷受单节点振荡的影响。采用控制功率再分配的方法解决了增加暂态过程的问题。通过仿真模型,采用了多种方法来调节功率再分配。计算结果表明,功率再分配的效率与研究过程的初始条件密切相关。在研究的过程中,提出了一种确定初始条件的方法。该方法是基于确定扭矩及其导数的特征。根据研究结果,从获得较好的超调性和鲁棒性以及满意的响应率水平的角度来看,在低档位(4档以下)下应用ZVD(零振动导数)功率再分配算法是合适的。对于更高的档位,建议在响应速率不长于动态系统中发生的单节点振荡模式周期的情况下使用Ramp算法(控制输入线性增加)。该算法的应用不仅可以降低变速器的动态载荷,还可以提高车辆的舒适性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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