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Analysis of the influence of a vehicle's driveline dynamic behavior regarding the performance perception at low frequencies

机译:车辆传动系统动态行为对低频性能感知的影响分析

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The aim of this paper (which is the continuation of the work presented at the ISATA 2000 International Conference) is to analyze the low frequency driveline torsional vibrations in a vehicle. It is known from many studies and investigations, that the driveline torsional vibrations are mainly responsible of the driver's performance perception and the vehicle's driveability. So many manufacturers use the driveline's response in order to provide their vehicles with characteristics that are specific for the vehicle's segment class and the market. In this regard the vibration's behavior has been investigated, studying some typical steady and transient vehicle maneuvers. As a diagnostic guideline for the design's concept development, a driveline simulation model in Matlab/Simulink environment has been implemented. Therefore the basic features has been created to improve a complete vehicle co-simulation, using a engine cycle code and a mechanical driveline model. The paper describes the utilized approach and gives same examples of its application in design and diagnostic. The important results (steady and transient phenomena) have been compared with experimental data carried out on a small/medium Fiat Auto vehicle.
机译:本文的目的(这是在ISATA 2000国际会议上呈现的工作的延续)是分析车辆中的低频传动系扭转振动。从许多研究和调查中都是已知的,传动系扭转振动主要负责驾驶员的性能感知和车辆的可驾驶性。这么多制造商使用Driveline的响应,以便为他们的车辆提供特点对车辆分部级和市场的特性。在这方面,已经调查了振动的行为,研究了一些典型的稳定和瞬态的车辆演习。作为设计概念开发的诊断指南,已经实现了Matlab / Simulink环境中的传动系仿真模型。因此,已经创建了基本特征以改善完整的车辆共模,使用发动机循环码和机械传动系模型。本文介绍了利用方法,并在设计和诊断中提供了其应用的相同示例。将重要结果(稳态和瞬态现象)与在小型/中等菲亚特汽车车辆上进行的实验数据进行了比较。

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