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LocSpeck: A Collaborative and Distributed Positioning System for Asymmetric Nodes Based on UWB Ad-Hoc Network and Wi-Fi Fingerprinting

机译:LocSpeck:基于UWB Ad-Hoc网络和Wi-Fi指纹识别的非对称节点协同分布式定位系统

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摘要

This paper presents LocSpeck, a collaborative and distributed indoor positioning system for dynamic nodes connected using an ad-hoc network, based on inter-node relative range measurements and Wi-Fi fingerprinting. The proposed system operates using peer-to-peer range measurements and does not need ultra-wideband (UWB) fixed anchor, nor it needs a predefined network topology. The nodes could be asymmetric in terms of the available sensors onboard, the computational resources, and the power capacity. This asymmetry adversely affects the positioning performance of the weaker nodes. Collaboration between different nodes is achieved through a distributed estimator without the need of a single centralized computing element. The ranging measurement component of the system is based on the DW1000 UWB transceiver chip from Decawave, which is attached to a set of smartphones equipped with asymmetric sensors. The distributed positioning filter fuses, locally on each node, the relative range measurements, the reading from the internal sensors, and the Wi-Fi received signal strength indicator (RSSI) readings to obtain an estimate of the position of each node. The described system does not depend on fixed UWB anchors and supports online addition and removal of nodes and dynamic node role assignment, either as an anchor or as a rover. The performance of the system is evaluated by real-world test scenarios using a set of four smartphones navigating an indoor environment on foot. The performance is compared to that of a commercial UWB-based system. The results presented in this paper show that weak mobile nodes, in terms of available positioning sensors, can benefit from collaboration with other nearby nodes.
机译:本文介绍了LocSpeck,这是一种基于节点间相对范围测量和Wi-Fi指纹识别的协作分布式分布式室内定位系统,用于使用自组织网络连接的动态节点。拟议的系统使用对等范围测量进行操作,不需要超宽带(UWB)固定锚,也不需要预定义的网络拓扑。就机载可用传感器,计算资源和功率容量而言,节点可能是不对称的。这种不对称会不利地影响较弱节点的定位性能。不同节点之间的协作是通过分布式估计器实现的,而无需单个集中式计算元素。该系统的测距测量组件基于Decawave的DW1000 UWB收发器芯片,该芯片与一组配备了非对称传感器的智能手机相连。分布式定位滤波器在每个节点上局部融合相对范围测量值,来自内部传感器的读数以及Wi-Fi接收信号强度指示器(RSSI)读数,以获得每个节点位置的估计值。所描述的系统不依赖于固定的UWB锚点,而是支持在线添加和删除节点以及动态节点角色分配(作为锚点或漫游车)。该系统的性能是通过使用一组四台智能手机在步行室内环境中进行导航的真实测试场景进行评估的。将性能与基于商业UWB的系统的性能进行了比较。本文提供的结果表明,就可用的定位传感器而言,较弱的移动节点可以从与附近其他节点的协作中受益。

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