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Operational Modal Analysis and the performance assessment of vehicle suspension systems

机译:车辆悬架系统的运行模态分析和性能评估

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摘要

Comfort, road holding and safety of passenger cars are mainly influenced by an appropriate design of suspension systems. Improvements of the dynamic behaviour can be achieved by implementing semi-active or active suspension systems. In these cases, the correct design of a well-performing suspension control strategy is of fundamental importance to obtain satisfying results. Operational Modal Analysis allows the experimental structural identification in those that are the real operating conditions: Moving from output-only data, leading to modal models linearised around the more interesting working points and, in the case of controlled systems, providing the needed information for the optimal design and verification of the controller performance. All these characters are needed for the experimental assessment of vehicle suspension systems. In the paper two suspension architectures are considered equipping the same car type. The former is a semi-active commercial system, the latter a novel prototypic active system. For the assessment of suspension performance, two different kinds of tests have been considered, proving ground tests on different road profiles and laboratory four poster rig tests. By OMA-processing the signals acquired in the different testing conditions and by comparing the results, it is shown how this tool can be effectively utilised to verify the operation and the performance of those systems, by only carrying out a simple, cost-effective road test.
机译:悬挂系统的适当设计主要影响乘用车的舒适性,抓地力和安全性。可以通过实施半主动或主动悬架系统来实现动态行为的改善。在这些情况下,正确设计良好的悬架控制策略对于获得满意的结果至关重要。操作模态分析允许在实际操作条件下进行实验结构识别:从仅输出的数据转移到围绕更有趣的工作点线性化的模态模型,并且在受控系统的情况下,为模型提供所需的信息。优化设计并验证控制器性能。所有这些特征对于车辆悬架系统的实验评估都是必需的。在本文中,两种悬架架构被视为配备相同的车型。前者是半主动商业系统,后者是新型原型主动系统。为了评估悬架性能,已考虑了两种不同的测试,分别在不同的道路轮廓上进行了地面测试,并在实验室进行了四个海报架测试。通过OMA处理在不同测试条件下获取的信号并通过比较结果,表明仅通过执行简单,经济高效的方法即可有效利用此工具来验证那些系统的运行和性能测试。

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