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Design of a Wireless Assisted Pedestrian Dead Reckoning System--The NavMote Experience

机译:无线辅助行人航位推算系统的设计--NavMote体验

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In this paper, we combine inertial sensing and sensor network technology to create a pedestrian dead reckoning system. The core of the system is a lightweight sensor-and-wireless-embedded device called NavMote that is carried by a pedestrian. The NavMote gathers information about pedestrian motion from an integrated magnetic compass and accelerometers. When the NavMote comes within range of a sensor network (composed of NetMotes), it downloads the compressed data to the network. The network relays the data via a RelayMote to an information center where the data are processed into an estimate of the pedestrian trajectory based on a dead reckoning algorithm. System details including the NavMote hardware/software, sensor network middleware services, and the dead reckoning algorithm are provided. In particular, simple but effective step detection and step length estimation methods are implemented in order to reduce computation, memory, and communication requirements on the Motes. Static and dynamic calibrations of the compass data are crucial to compensate the heading errors. The dead reckoning performance is further enhanced by wireless telemetry and map matching. Extensive testing results show that satisfactory tracking performance with relatively long operational time is achieved. The paper also serves as a brief survey on pedestrian navigation systems, sensors, and techniques.
机译:在本文中,我们结合了惯性传感和传感器网络技术来创建行人航位推算系统。该系统的核心是一种轻巧的传感器和无线嵌入式设备,称为NavMote,由行人携带。 NavMote通过集成的磁罗盘和加速度计收集有关行人运动的信息。当NavMote进入传感器网络(由NetMotes组成)的范围内时,它将压缩数据下载到网络。网络通过RelayMote将数据中继到信息中心,在此基于航位推算算法将数据处理为行人轨迹的估计。提供了系统详细信息,包括NavMote硬件/软件,传感器网络中间件服务以及航位推算算法。特别地,实现了简单但有效的步长检测和步长估计方法,以减少对Motes的计算,存储和通信需求。指南针数据的静态和动态校准对于补偿航向误差至关重要。无线遥测和地图匹配进一步提高了航位推测法的性能。大量的测试结果表明,在相对较长的运行时间下,可以获得令人满意的跟踪性能。本文还作为对行人导航系统,传感器和技术的简要调查。

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