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Positioning of human resources in a construction environment using Zigbee

机译:利用ZigBee定位人力资源在建筑环境中

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Purpose: The purpose of this work is to explore the feasibility and accuracy with which people can be located in a construction site using Zigbee technology. Such positioning systems will enable the tracking of workers and this is critical in work areas such as tunnels and other constrained spaces which can be hazardous. Furthermore, such systems can detect worker congestion and work in unallocated areas which can lead to better planning and improved productivity. Earlier work on positioning has explored technologies such as GPS, RFID, WLAN, Bluetooth. The cost associated with most of these methods has been significant and limits widespread use within a construction site. Hence configuring a cost-effective technology was also a key requirement of this study. Method: The investigation was done in three phases. In the first phase the Zigbee system was configured in a laboratory environment and accuracy of positioning was established. In the next phase, the system was mounted on a construction helmet and tests were conducted within enclosed spaces of a construction site. In the final phase the system mounted on a helmet was worn by a worker and tested outdoors on a construction site. In all phases the factors affecting the position accuracy were analyzed. Results & Discussion: The seven positions identified in the table of the final phase of investigation correspond to the division of the site into grids. The total number of positions evaluated and the number of these positions which were correctly classified are specified in the table. It can be seen that the accuracy of the classification ranged from 74.3% to 93.3%. It was found that the accuracy varied based on the distance of the position from transmitters as well as proximity of the position to the edge of adjacent grids. Based on these investigation guidelines on the configuration and usage of Zigbee based networks for positioning construction personnel were developed. In addition to the technological feasibility a cost comparison was also done and it was found that the Zigbee technology could be implemented at about 1/10th of the cost of WLAN and other technologies. Although this technology was only tested on construction workers it is directly applicable for location of other subjects such as differently abled or elderly persons whose location needs to be monitored remotely.
机译:目的:这项工作的目的是探讨使用ZigBee技术的人们位于施工现场的可行性和准确性。这种定位系统将能够跟踪工人,这在诸如隧道等的工作区域中是至关重要的,这可能是危险的。此外,这种系统可以检测工人拥塞和在未分配区域中的工作,这可以导致更好的规划和提高生产率。前面的定位工作已经探索了GPS,RFID,WLAN,蓝牙等技术。与大多数方法相关的成本在建筑工地内部具有重要意义并限制了广泛的用途。因此,配置成本效益的技术也是本研究的关键要求。方法:调查在三个阶段进行。在第一阶段,ZigBee系统在实验室环境中配置,并建立了定位的准确性。在下阶段,系统安装在建筑头盔上,并在施工现场的封闭空间内进行测试。在最后阶段,系统安装在头盔上的系统被工人佩戴并在施工现场进行户外测试。在所有阶段,分析了影响位置准确度的因素。结果与讨论:调查最终阶段表格中识别的七个职位对应于网站的划分为网格。评估的位置总数和正确分类的这些位置的数量在表中指定。可以看出,分类的准确性范围为74.3%至93.3%。发现精度基于来自发射机的位置的距离以及相邻网格边缘的位置的距离而变化。基于这些调查指南,制定了基于ZigBee基于ZigBee网络的定位施工人员的配置和用途。除了技术可行性外,还完成了成本比较,发现ZigBee技术可以在WLAN和其他技术的成本下实现。虽然这项技术仅在建筑工人上进行测试,但它直接适用于其他主题的位置,例如不同的受到的人或老年人,其位置需要远程监测。

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