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Device Free Detection to Improve Construction Work Health and Safety

机译:设备免费检测,以提高施工工作健康和安全

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The Australian construction industry is identified as one among five industries to receive priority attention under the Australian Work Health and Safety Strategy 2012-2022. Among the recorded construction fatalities in 2012, vehicle incidents accounted for 15% and being hit by moving objects accounted for 10%. Tracking of individuals on-site could provide a technological solution to improve safety. This paper proposes a novel non-tagging based wireless networking solution called device free localization to enhance safety on site. Device free localization techniques use radio signal propagation effects such as multi-path fading and shadowing caused by the obstruction(s). The proposed solution defines zones in the construction site. Zone identification is based on the risk associated with the location map of the site. Defining risk profiles considers the activities associated with the geographic location such as loading/unloading areas, truck, and vehicle entering area. The presence of workers entering a particular zone is detected based on this device free detection technique, which will later be extended to localization. This paper proposes a framework for defining risk associated zones for the construction sites for the effective implementation of device-free detection systems. Feasibility of the proposed device free detection technique is verified by preliminary experiments done in an indoor environment with high multi-path fading.
机译:澳大利亚建筑业在澳大利亚工作健康和安全战略下获得了5个行业,以获得优先关注2012-2022。在2012年记录的施工死亡中,车辆事件占15%并被移动物体占据占10%。跟踪个人现场的可以提供技术解决方案,以提高安全性。本文提出了一种新颖的基于非标签的无线网络解决方案,称为设备免费定位,以增强现场的安全性。设备免费定位技术使用无线电信号传播效果,例如由障碍物引起的多路径衰落和阴影。所提出的解决方案在施工现场定义区域。区域识别基于与网站的位置图相关的风险。定义风险配置文件考虑与地理位置相关的活动,例如装载/卸载区域,卡车和车辆进入区域。基于此设备的自由检测技术检测进入特定区域的工人的存在,后来将延伸到本地化。本文提出了一种用于定义有效实施无设备检测系统的施工现场风险相关区域的框架。通过在具有高多路径衰落的室内环境中进行的初步实验验证了所提出的装置自由检测技术的可行性。

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