混合与自主飞行时间定位的数据融合

Aymen Fakhreddine, D. Giustiniano, Vincent Lenders
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引用次数: 5

摘要

现有的移动设备,如智能手机,依赖于多无线接入技术(RAT)架构,在用户移动的各种环境背景下提供无处不在的位置信息。然而,现有的体系结构将不同的定位技术视为整体实体,并从RAT中选择期望提供最高精度的最终导航位置。相反,我们建议融合不同无线电技术的定时范围测量,以规避单个无线电接入技术的限制。我们朝这个方向迈出了第一步,并建议将卫星导航系统和WiFi网络的定时测量融合在一起。我们介绍了不同的新方法,如数据融合器、WiFi ToF距离估计器和几何统计方法,以在丰富的测量值中最好地融合一组范围。实验结果表明,我们的解决方案允许移动设备在各种具有挑战性的场景中有效地定位自己。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Fusion for Hybrid and Autonomous Time-of-Flight Positioning
Existing mobile devices such as smartphones rely on a multi-radio access technology (RAT) architecture to provide pervasive location information in various environmental contexts as the user is moving. Yet, existing architectures consider the different localization technologies as monolithic entities and choose the final navigation position from the RAT that is expected to provide the highest accuracy. In contrast, we propose to fuse timing range measurements of diverse radio technologies in order to circumvent the limitations of the individual radio access technologies. We take a first step in this direction and propose to fuse timing measurements of satellite navigation systems and WiFi networks. We introduce different novel methods such as a data fuser, an estimator of WiFi ToF distance and a geometrical-statistical approach to best fuse the set of ranges in presence of a rich set of measurements. Experimental results show that our solution allows the mobile device to efficiently position itself in diverse challenging scenarios.
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