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Improving dynamic proximity sensing and processing for smart work-zone safety

机译:改善动态接近感应和处理,以实现智能工作区安全

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摘要

Equipment/vehicles striking workers is one of the most frequent accidents that occur in roadway workzones. As a means of prevention, a number of active technologies have been developed to provide proximity sensing and alerts for workers and equipment operators. However, most of these systems are based on the distance/proximity level between workers and equipment and neglect the variations caused by different settings and environmental conditions, such as equipment types and approaching speeds, which can result in inconsistency and delay of the systems. As of yet, previous research has insufficiently investigated these issues. This research addresses the issues by utilizing the Bluetooth Low Energy (BLE)-based proximity sensing and alert system developed by the authors. This paper discusses the development and assessment of parameter adjustment and adaptive signal processing (ASP) methods. The research conducted field trials in various dynamic conditions and settings to assess the performance of the system. The test results showed that the parameter adjustment function reduced the inconsistency of the alert distances resulting from different types of equipment, and that the ASP method reduced the time delay resulting from high approaching speeds. The developed proximity safety alerts system provides stakeholders with better understanding of dynamic spatial relationships among equipment, operator, workers, and a surrounding work environment; thus, improving construction work zone safety.
机译:撞击工人的设备/车辆是在道路工作区中最常见的事故之一。作为预防手段,已经开发了许多主动技术来为工人和设备操作员提供接近感应和警报。但是,这些系统大多数都是基于工人和设备之间的距离/接近程度,而忽略了由不同设置和环境条件(例如设备类型和接近速度)引起的变化,这可能导致系统的不一致和延迟。到目前为止,以前的研究还不足以调查这些问题。这项研究利用作者开发的基于蓝牙低功耗(BLE)的接近感应和警报系统解决了这些问题。本文讨论了参数调整和自适应信号处理(ASP)方法的开发和评估。该研究在各种动态条件和设置下进行了现场试验,以评估系统的性能。测试结果表明,参数调整功能减少了不同类型设备引起的警报距离不一致,ASP方法减少了由于接近速度而引起的时间延迟。先进的接近安全警报系统使利益相关者能够更好地了解设备,操作员,工人和周围工作环境之间的动态空间关系;从而提高了施工作业区的安全性。

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