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On the Use of 3-D Accelerometers for Road Quality Assessment

机译:关于使用3D加速度计进行道路质量评估的方法

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Lack of comprehensive and up-to-date information on degrading road conditions is only exacerbating the already inefficient, expensive and labor-expensive methods associated with road maintenance and repair. Among many sensing modalities that are currently being explored, MEMS accelerometers are increasingly becoming popular in the task of road quality assessment, especially in large-scale crowdsourced data gathering efforts. In this paper, recent results on the use of accelerometers for detection of road abnormalities is presented. In particular, with an emphasis on developing a low-cost yet robust road abnormality detection system, predictive effectiveness offeaturesgenerated from acceleration sensors is explored. By utilizing a signal transmission model that captures the system dynamics and low-pass filtering effects associated with vehicle suspension system, a simplified approach towards the `reconstruction' of road surface conditions from vertical acceleration measurements is presented. Furthermore, with this particular signal transmission model in place, predictive effectiveness of features derived from acceleration sensors is explored via the use of a statistical approach referred to asrelief algorithm. The signal model and feature analysis approach is demonstrated via areal-lifedataset.
机译:缺乏关于恶化道路状况的全面和最新信息只会加剧与道路养护和维修相关的本已低效,昂贵和劳力昂贵的方法。在目前正在探索的许多传感方式中,MEMS加速度计在道路质量评估任务中越来越受欢迎,尤其是在大规模众包数据收集工作中。本文介绍了使用加速度计检测道路异常的最新结果。特别是,着重于开发一种低成本而强大的道路异常检测系统,其预测效果 功能 探索从加速度传感器产生的信号。通过利用捕获与车辆悬架系统相关的系统动力学和低通滤波效果的信号传输模型,提出了一种从垂直加速度测量中“重构”路面状况的简化方法。此外,在此特定信号传输模型到位的情况下,通过使用称为“ 救济算法 。信号模型和特征分析方法通过 现实生活 数据集。

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