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A Wireless Sensor Network Based Personnel Positioning Scheme in Coal Mines with Blind Areas

机译:基于无线传感器网络的盲区煤矿人员定位方案

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摘要

This paper proposes a novel personnel positioning scheme for a tunnel network with blind areas, which compared with most existing schemes offers both low-cost and high-precision. Based on the data models of tunnel networks, measurement networks and mobile miners, the global positioning method is divided into four steps: (1) calculate the real time personnel location in local areas using a location engine, and send it to the upper computer through the gateway; (2) correct any localization errors resulting from the underground tunnel environmental interference; (3) determine the global three-dimensional position by coordinate transformation; (4) estimate the personnel locations in the blind areas. A prototype system constructed to verify the positioning performance shows that the proposed positioning system has good reliability, scalability, and positioning performance. In particular, the static localization error of the positioning system is less than 2.4 m in the underground tunnel environment and the moving estimation error is below 4.5 m in the corridor environment. The system was operated continuously over three months without any failures.
机译:本文提出了一种新颖的盲区隧道网络人员定位方案,与大多数现有方案相比,该方案既具有低成本又具有高精度。基于隧道网络,测量网络和移动矿工的数据模型,全球定位方法分为四个步骤:(1)使用定位引擎计算本地人员的实时位置,并通过定位引擎将其发送到上位机网关; (2)纠正因地下隧道环境干扰引起的定位误差; (3)通过坐标变换确定全局三维位置; (4)估计人员在盲区的位置。构造用于验证定位性能的原型系统表明,所提出的定位系统具有良好的可靠性,可扩展性和定位性能。特别是在地下隧道环境中,定位系统的静态定位误差小于2.4 m,而在走廊环境中,移动估计误差小于4.5 m。该系统在三个月内连续运行,没有任何故障。

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