基于动态信号强度映射的认知无线电非交互定位

Song Liu, Yingying Chen, W. Trappe, L. Greenstein
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引用次数: 28

摘要

认知无线电中底层协议栈的开放性增加了动态频谱接入的灵活性,促进了频谱高效通信。为了确保频谱共享的有效性,需要基于接收机有限的测量数据,以非交互方式定位主用户、辅助用户和未授权用户。在这项工作中,我们提出了两种基于接收信号强度动态映射(RSS)的无距离定位算法,以执行不需要来自被定位认知设备的合作的非交互式定位。通过插值的方法动态构建了监控区域内的细粒度信号强度图。利用该信号映射,在大多数信道变化条件下,所提出的方法比现有的非交互和基于RSS的方法具有更高的位置估计精度。我们的仿真结果和试验台的评估都证明了所提出算法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-interactive localization of cognitive radios based on dynamic signal strength mapping
The openness of the lower-layer protocol stacks in cognitive radios increases the flexibility of dynamic spectrum access and promotes spectrally-efficient communications. To ensure the effectiveness of spectrum sharing, it is desirable to locate primary users, secondary users, and unauthorized users in a non-interactive fashion based on limited measurement data at receivers. In this work, we present two range-free localization algorithms based on dynamic mapping of received signal strength (RSS) to perform non-interactive localization that does not require the cooperation from the cognitive device to be located. A fine-grained signal strength map across the surveillance area is constructed dynamically through interpolation. By making use of this signal map, the proposed schemes can achieve higher accuracy of location estimation than existing non-interactive and RSS based methods in most channel variation conditions. Both our simulation results as well as testbed evaluations have demonstrated the feasibility of the proposed algorithms.
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