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State Space Modeling and Stable Dynamic Inversion for Trajectory Tracking on an Industrial Seat Test Rig

机译:用于工业座椅测试台的轨迹跟踪的状态空间建模和稳定的动态反演

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摘要

This paper introduces a novel approach for trajectory tracking on seat test rigs. Seat test rigs are used in the automotive industry to test prototypes of new seats with respect to their comfort and vibration characteristics. Classically, a digital Fourier transform (DFT) approach, based on a Frequency Response Function (FRF) model, is used in this domain and different software packages exist that are based on this approach. The novel approach proposes state space models to identify the test rig and uses the recently developed Stable Dynamic Inversion (SDI) to invert the obtained state space models. The approach is validated on an industrial seat test rig and it is shown that the new approach is a competitive alternative to the existing DFT based reduce the state space model order without loss of accuracy.
机译:本文介绍了一种在座椅测试台架上进行轨迹跟踪的新颖方法。座椅测试台在汽车行业中用于测试新座椅的舒适性和振动特性。传统上,在此域中使用基于频率响应函数(FRF)模型的数字傅立叶变换(DFT)方法,并且存在基于该方法的不同软件包。新颖的方法提出了状态空间模型来识别测试台,并使用最近开发的稳定动态反演(SDI)来对获得的状态空间模型进行反演。该方法已在工业座椅测试台上进行了验证,结果表明,该新方法是现有DFT的有竞争力的替代方案,该方法基于DFT减少了状态空间模型的阶数而又不损失准确性。

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