Poster Abstract: Node Deployment Mechanism for Quick, Indoor, and Device-Free Localization

Jinjun Liu, Ning An, Md. Tanbir Hassan, Guilin Chen, Yanyong Zhang
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引用次数: 2

Abstract

Radio frequency based device-free passive localization has been actively studied. An important issue with this technique is that a large amount of sensor nodes are usually deployed in localization environments, causing high deployment cost, high computation complexity and other drawbacks. To reduce the number of nodes while maintaining high localization accuracy, this paper proposes a fingerprint-based node deployment mechanism, which saves hardware cost, speeds up node deployment process as well as maintains a similar accuracy. The experiments are conducted in two environments with considerably different sizes of 150 m2 and 25 m2. Maintaining the accuracies above 95%, the proposed mechanism can efficiently reduce the total number of nodes in large room by 54.55% and in small room by 68.75%. Especially, the localization response time sharply reduces by 93.08% in the large room and 79.87% in the small room.
摘要:快速、室内、无设备定位的节点部署机制
基于射频的无源定位技术得到了积极的研究。该技术的一个重要问题是,大量传感器节点通常部署在本地化环境中,导致部署成本高、计算复杂度高等缺点。为了在减少节点数量的同时保持较高的定位精度,本文提出了一种基于指纹的节点部署机制,既节省了硬件成本,又加快了节点部署速度,同时又保持了相似的定位精度。实验在150m2和25m2两种不同大小的环境中进行。在保持95%以上的准确率的情况下,该机制可以有效地将大房间节点总数减少54.55%,小房间节点总数减少68.75%。其中,大房间和小房间的定位响应时间分别缩短了93.08%和79.87%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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