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Leveraging Bluetooth Consumer Electronics as Proximity Sensors to Construction Health Hazards

机译:利用蓝牙消费电子产品作为接近传感器对建筑健康造成危害

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摘要

There are numerous hazards on construction sites. Significant research has focused on using advanced technologies to prevent collisions between moving construction equipment and workers. Relatively few studies have focused on advanced technologies to quantify worker exposure to long-term health hazards, such as noise, fumes, silica dust and other exposure hazards. One possible technology is wireless Bluetooth systems to quantify exposure risk. A series of tests was designed to investigate leveraging consumer Bluetooth enabled devices as a platform to determine the proximity of a construction worker to potential construction hazards. Bluetooth enabled devices were tested in controlled studies to determine the characteristics of the signal detection and signal strength. The controlled studies demonstrated the viability of estimating the distance between a Bluetooth receiver and emitting device. In a field test, the receiver system performed reasonably well and the system was able to determine when workers were within approximately 50 to 100 feet of the construction hazard. However, signal disruption between the emitter and the receiver due to obstructions was an issue. Based on this research, there is significant promise in utilizing Bluetooth to detect worker proximity to processes that represent exposure risks to long-term health hazards.
机译:施工现场有许多危险。大量的研究集中在使用先进的技术来防止移动的建筑设备和工人之间发生碰撞。相对地,很少有研究集中在先进技术上,以量化工人对长期健康危害的暴露程度,例如噪音,烟雾,二氧化硅粉尘和其他暴露危害。一种可能的技术是用于量化暴露风险的无线蓝牙系统。设计了一系列测试,以调查利用支持消费者的蓝牙设备作为平台来确定建筑工人与潜在建筑危害之间的距离。在受控研究中对支持蓝牙的设备进行了测试,以确定信号检测的特性和信号强度。对照研究证明了估算蓝牙接收器和发射设备之间距离的可行性。在现场测试中,接收器系统运行良好,并且该系统能够确定何时工人处于施工危害的约50至100英尺范围内。但是,由于障碍物,发射器和接收器之间的信号中断是一个问题。基于这项研究,利用蓝牙技术来检测工人是否接近具有长期健康危害风险的过程具有巨大的前景。

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