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WirelessHART localization algorithm

机译:WirelessHART定位算法

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摘要

The growth in the use of wireless sensor networks has made possible the development of improvements that meet the needs of the communication industry, including several devices with to low cost, low power consumption, mobility and ease of integration, installation and configuration advantages. Not only that but they also create additional functionalities, such as showing the location of field engineers who are active in industrial environments. The WirelessHART protocol is an open standard for wireless communication that seeks to meet these qualities. This study presents a development of an application for the localization of a mobile device via the WirelessHART network. Different methods are analyzed to estimate the distance between the mobile node and the other fixed elements of the wireless sensor network, such as deployment topologies and algorithms, which are used to compute the data and determine the location in a coordinate plane. The operation of the proposed system and the location method were evaluated by means of simulations and practical tests. Due to the conditions used for the installation of the devices, it was possible to obtain a range of radio transmission over 100 m, which allowed to determine an area of monitoring system of about 100 m ?? 100 m. The results obtained from the error location reached between a 72% and 80% of the estimated localization that was less than 5 meters.
机译:无线传感器网络的使用的增长使满足通信行业需求的改进的发展成为可能,包括具有低成本,低功耗,移动性以及易于集成,安装和配置优势的多种设备。不仅如此,它们还创建了其他功能,例如显示在工业环境中活跃的现场工程师的位置。 WirelessHART协议是寻求满足这些质量的无线通信的开放标准。这项研究提出了一种通过WirelessHART网络对移动设备进行本地化的应用程序的开发。分析了不同的方法以估计移动节点与无线传感器网络的其他固定元素之间的距离,例如部署拓扑和算法,这些距离用于计算数据并确定坐标平面中的位置。通过仿真和实际测试对所提出系统的操作和定位方法进行了评估。由于设备安装所使用的条件,有可能获得100 m以上的无线电传输范围,从而可以确定约100 mΩ的监视系统区域。 100米从错误位置获得的结果达到估计定位的不到5米的72%到80%之间。

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