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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Distributed Positioning System Based on a Predictive Fingerprinting Method Enabling Sub-Metric Precision in IEEE 802.11 Networks
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A Distributed Positioning System Based on a Predictive Fingerprinting Method Enabling Sub-Metric Precision in IEEE 802.11 Networks

机译:基于预测指纹方法的分布式定位系统,可实现IEEE 802.11网络中的亚度量精度

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In this paper, we present a distributed positioning system for indoor environment based on a mesh of compact independent anchor nodes. Each node is built of low-cost off-the-shelf components and operates as specialized access points capable of standard connectivity at 2.45 GHz. The key technology for the localization strategy is the switched beam antenna (SBA), which enables a space division multiple access (SDMA) paradigm. The coordinated operation of SBA-equipped anchor nodes constitutes a legacy unmodified IEEE 802.11 network which can exploit the multiplexing mechanism. The latter is the driving force of the estimation strategy, with the positional information obtained as the result of a maximum likelihood algorithm driven by the comparison of a real-time received signal strength indicator (RSSI) with the predicted signal level distribution, which can be estimated and stored without the need of lengthy offline measurement. The signal level prediction is based on a simple propagation model which is effective because benefits of both the elementary antenna radiation beams directivity and the circular polarization operation, two strong aids for the mitigation of the multipath impairment. In turn, these feature make the estimation procedure tolerant to noisy power measurements, hence particularly suitable for cost-effective solutions based on RSSI. Experimental validations demonstrate the performance of a network composed of four anchors arranged in a 2.63.8 m mesh in a 67 m office room, and dealing with a single target node. The mean error inside the mesh area is 63 cm while the mean error in the entire room is 1.1 m. Focusing on the cumulative distributi- n of the error, the 90th percentile value is 1 m considering only the mesh and 1.9 m for the entire room.
机译:在本文中,我们提出了一种基于紧凑的独立锚节点网格的室内环境分布式定位系统。每个节点均由低成本的现成组件构成,并作为能够在2.45 GHz上实现标准连接的专用接入点进行操作。定位策略的关键技术是开关波束天线(SBA),它实现了空分多址(SDMA)范例。配备SBA的锚节点的协同操作构成了一个传统的未经修改的IEEE 802.11网络,该网络可以利用多路复用机制。后者是估计策略的驱动力,位置信息是通过最大似然算法获得的位置信息,该算法是通过将实时接收信号强度指示器(RSSI)与预测信号电平分布进行比较来驱动的,无需冗长的离线测量即可估算和存储。信号电平预测基于简单的传播模型,该模型之所以有效,是因为基本天线辐射束方向性和圆极化操作均受益,这是缓解多径损伤的两个有力手段。反过来,这些功能使估算程序可以承受噪声功率测量,因此特别适合基于RSSI的经济高效解决方案。实验验证证明了一个网络的性能,该网络由在67 m的办公室室内的2.63.8 m网格中排列的四个锚组成,并处理单个目标节点。网格区域内的平均误差为63 cm,而整个房间的平均误差为1.1 m。着眼于误差的累积分布,仅考虑网格,第90个百分位值为1 m,整个房间为1.9 m。

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