基于立方的无线传感器网络三维定位

H. Y. Shwe, P. Chong
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引用次数: 2

摘要

利用传感器网络进行定位以其低成本和潜在的在真实和敌对应用场景中监测和定位的用途而备受关注。目前,基于GPS和RFID技术的人/物定位方法有很多。但是,在某些应用场景中,例如灾难救援应用中,这种定位设备可能会损坏,无法提供幸存者的位置信息。本文的主要目标是设计和开发一种鲁棒的定位技术,用于地震或火灾等灾害情况下的人类存在检测。在本文中,我们提出了一种基于从传感器锚点收集的跳数数据的三维定位技术,以估计激活的传感器在三维协调中的位置。我们的算法结合了基于网格的输出和事件触发机制两个显著特征,保证了准确性和功率效率的提高。仿真结果表明,该算法能够提高人体存在的定位精度,在真实环境中效果良好。
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Cubic-based 3-D localization for wireless sensor networks
Localization using sensor network has attracted much attention for its comparable low-cost and potential use with monitoring and targeting purposes in real and hostile application scenarios. Currently, there are many available approaches to locate persons/things based of GPS and RFID technologies. However, in some application scenario, e.g., disaster rescue application, such localization devices may be damaged and may not provide the location information of the survivors. The main goal of this paper is to design and develop a robust localization technique for human existence detection in case of disasters such as earthquake or fire. In this paper, we propose a 3-D localization technique based on the hop-count data collected from sensor anchors to estimate the location of the activated sensor mote in 3-D coordination. Our algorithm incorporates two salient features, grid-based output and event-triggering mechanism, to guarantee both improve accuracy and power efficiency. Simulation results indicate that the proposed algorithm can improve the localization precision of the human existence and work well in real environment.
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