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Approach for Parameter Determination for Objective Comfort Evaluation of the Vehicle Vibration Induced by Powertrain

机译:用于电动系诱导车辆振动的客观舒适评估参数测定方法

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The driving comfort influences the customer purchase decision; hence it is an important aspect for the vehicle development. To better quantify the comfort level and reduce the experiment costs in the development process, the subjective comfort assessment by test drivers is nowadays more and more replaced by the objective comfort evaluation. Hereby the vibration comfort is described by scalar objective characteristic parameters that correlate with the subjective assessments. The correlation analysis requires the assessments and measurements at different vehicle vibration. To determine the objective parameters regarding the powertrain excitations, most experiments in the previous studies were carried out in several test vehicles with different powertrain units. Due to the different features among test vehicles, the subjective assessments and the objective measurements are influenced by further interfering factors, such as different wheel excitations between vehicles, which lead to an inevitable variance. This paper presents a new approach for determination of the objective parameters for vehicle vibrations caused by powertrain. This approach is performed in a real vehicle on the vehicle roller test bench. By using various measures (powertrain variants), the vehicle vibrations are selectively modified in such a way that the effects can be both objectively measured and subjectively perceived. For each variant, professional test drivers assess vibration comfort for seat and steering wheel. Through correlation analysis the objective parameters are determined.
机译:驾驶舒适性影响客户购买决定;因此,这是车辆发展的一个重要方面。为了更好地量化舒适程度并降低开发过程中的实验成本,现在越来越多地通过客观舒适评估所取代的测试司机的主观舒适评估。因此,振动舒适性由标量与主观评估相关的标量观的参数描述。相关性分析要求在不同的车辆振动下进行评估和测量。为了确定有关动力系激发的客观参数,前面研究中的大多数实验是在几种具有不同动力系单元的测试车辆中进行的。由于测试车辆之间的不同特征,主观评估和目标测量受进一步干扰因素的影响,例如车辆之间的不同车轮激发,这导致不可避免的方差。本文介绍了一种新方法,用于确定由动力系引起的车辆振动的客观参数。该方法在车辆滚筒测试台上的真实车辆中进行。通过使用各种措施(动力总成变型),选择性地修改车辆振动,使得效果可以妨碍效果和主动地感知。对于每个变体,专业测试司机评估座椅和方向盘的振动舒适度。通过相关性分析,确定客观参数。

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