Primary Signal Transmitter Localization Using Cognitive Radio Networks

Nazar Radhi, H. Al-Raweshidy
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引用次数: 3

Abstract

In communication technology, cognitive radio networks can be effectively used to detect and track targets of interested (primary users). Primary transmitter location through the collaborative effort of multiple cognitive radio nodes is relevant in this investigate. A two stage source localization process is proposed in this work, the time difference of arrival values (TDOA) are first determined using the generalize cross correlation (GCC) method and then TDOA values are used by a least squares (LS) estimation scheme to determine the primary transmitter location. The effect number of CR nodes, spacing of inter node, topology, noise, distance of source to node, node failure, location perturbation on the location estimation performance have been studied through MATLAB simulation. Simulation result illustrate that the error difference can be reduced by increasing the number of CR nodes or the spacing inter nodes and improve the location estimation accuracy. The CR node topology should be well represented in all three dimensions to obtain required location estimation performance. In additional, result show that the primary transmitter location estimation accuracy is not harmfully affected by CR node failures or location perturbations.
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利用认知无线电网络定位主信号发射机
在通信技术中,认知无线电网络可以有效地用于探测和跟踪感兴趣的目标(主要用户)。通过多个认知无线电节点的协同努力进行主发射机定位与本研究相关。提出了一种两阶段源定位方法,首先利用广义互相关(GCC)方法确定到达时差(TDOA),然后利用最小二乘(LS)估计方法确定主发射机位置。通过MATLAB仿真研究了CR节点数、节点间间距、拓扑结构、噪声、源到节点距离、节点故障、位置扰动对定位估计性能的影响。仿真结果表明,通过增加CR节点个数或增加节点间距可以减小误差差,提高定位估计精度。为了获得所需的位置估计性能,CR节点拓扑应该在所有三个维度上都得到很好的表示。此外,结果表明,主发射机位置估计精度不受CR节点故障或位置扰动的有害影响。
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