基于GNU无线电和USRP的认知无线电混合频谱感知实验分析

A. Nafkha, Malek Naoues, Krzysztof Cichon, Adrian Kliks, Babar Aziz
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引用次数: 8

摘要

动态频谱接入是与静态频谱分配相对的概念,是认知无线电(CR)的关键要素之一。它允许辅助用户访问未使用的许可频段。为了检测主要用户的存在,CR设备必须执行的基本任务之一是频谱感知过程。本文提出了一种由序列能量检测(SED)和基于循环平稳(CB)的检测器串联而成的混合频谱传感体系结构。在信噪比非常高的情况下,采用前一种感知方法来减少频谱感知时间。非常低),而当SED不能保证所需的检测质量(即中等信噪比)时,执行后一种感测检测器。在GNURadio环境下,用USRP N210板验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid spectrum sensing experimental analysis using GNU radio and USRP for cognitive radio
The dynamic spectrum access is a concept opposite to static frequency spectrum assignment and one of the key elements of cognitive radio (CR). It allows secondary users to access unused licensed frequency bands. In order to detect the presence of primary users, one of the fundamental tasks that a CR equipment has to perform is spectrum sensing process. In this paper, a hybrid spectrum sensing architecture is proposed, which consists of the concatenation of a sequential energy detection (SED) and a cyclostationary-based (CB) detector. The former sensing method is performed to reduce spectrum sensing time, when the SNR is very high (resp. very low), while the latter sensing detector is performed whenever the SED does not guarantee the required quality of detection (i.e. moderate SNR regime). The efficiency of the proposed solution has been verified experimentally using USRP N210 boards under GNURadio environment.
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