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Study on vibration suppression method of vehicle with engine start-stop and automatic start-stop

机译:发动机启动和自动启动车辆振动抑制方法研究

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摘要

On the basis of previous research, this paper takes a more comprehensive study on the vibration of a vehicle with automatic transmission when engine start-stop and automatic start-stop. A 13 degrees of freedom (DOFs) vehicle dynamic model is established, and the dynamic response evaluation method is put forward. Three methods to reduce the vibration of powertrain and vehicle are analyzed, and the results show that increasing the damping of the mounting system can effectively reduce the vibration in these three methods. A novel semi-active hydraulic damping strut (HDS) as the fourth mount is designed and developed, the installation position and its outer channel size are optimized and calculated respectively based on its damping force calculation method and the design method of the powertrain mounting system (PMS). The calculation results of evaluation indexes with engine start-stop are analyzed in-depth. The optimized parameters of the semi-active HDS are taken into the 13 DOFs dynamic model to analyze the dynamic response of the engine automatic start-stop process, and the values of the evaluation indexes are decreased. To validate the effectiveness of the design method of the semi-active HDS, the experiment of the vehicle with and without the semi-active HDS are carried out, and the test results show that the seat rail acceleration are reduced with semi-active HDS introduced. The active side acceleration of the torque strut calculated by the 13 DOFs model is consistent well with the measured value with and without the semi-active HDS, which proves that the model is reasonable.
机译:在以前的研究的基础上,本文对发动机启动和自动启动时,对车辆的振动进行了更全面的研究。建立了13度的自由(DOF)车辆动态模型,提出了动态响应评估方法。分析了减少动力系和车辆振动的三种方法,结果表明,增加安装系统的阻尼可以有效地降低这三种方法中的振动。设计和开发了一种新型半主动液压阻尼支柱(HDS),其开发和开发,安装位置及其外部通道尺寸分别基于其阻尼力计算方法和动力总成安装系统的设计方法( pms)。深入分析了发动机启动的评价指标的计算结果。半主动HDS的优化参数被吸入13个DOFS动态模型,以分析发动机自动启动过程的动态响应,评估索引的值减少。为了验证半活动HDS的设计方法的有效性,进行了载体的车辆和没有半活性HDS的实验,并且测试结果表明,通过引入半活动的HDS,座椅轨道加速度降低。通过13个DOFS模型计算的扭矩支柱的主动侧加速度与测量值与半活动HDS的测量值相一致,这证明了模型是合理的。

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