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An Experimental Approach to Spectrum Sensing in Cognitive Radio Networks with Off-the-Shelf IEEE 802.11 Devices

机译:具有离地架IEEE 802.11设备的认知无线电网络中频谱感测的实验方法

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Spectrum sensing is essential to the realization of spectrum agility in cognitive radio (CR) networks. Although fundamental tradeoffs and theoretical limits associated with spectrum sensing have been studied extensively, there have been very few experimental studies focused on building a spectrum "sensor" with commercial off-the-shelf devices. We have therefore built a prototype of CR-based sensor implementation with off-the-shelf IEEE 802.11 devices. In particular, we have explored issues in implementing a spectrum sensor, mostly at the MAC layer, as well as the difficulty in implanting sensing functions into industrial network interfaces. Our experimental results demonstrate the feasibility of building a spectrum sensor and the construction of an incumbent-detection mechanism with off-the-shelf devices. We have also identified technical difficulties, such as device-dependency in determining the detection threshold, in-band signal jamming between secondary devices, and adjacent channel interference due to out-of-band signal emission. This experimental experience has led us to suggest a sensor design guideline for commercial wireless interfaces which can also facilitate other CR-related research.
机译:光谱感测对于认知无线电(CR)网络中的频谱敏捷性是必要的。尽管已经广泛研究了与谱检测相关的基本权衡和与谱检测相关的理论限制,但是很少有专注于用商业现成装置建造光谱“传感器”的实验研究。因此,我们建立了基于CR的传感器实现的原型,其中包括离上IEEE 802.11设备。特别是,我们已经探讨了在实现频谱传感器的问题,主要是在MAC层,以及将传感功能植入工业网络接口中的难度。我们的实验结果表明,用现成的设备构建频谱传感器的可行性和建设现有的检测机构。我们还确定了技术困难,例如控制阈值,辅助设备之间的检测阈值,带有相邻信道干扰的频道依赖性,以及带外信号发射的相邻信道干扰。这种实验经验导致我们建议商业无线界面的传感器设计指南,其也可以促进其他相关的CR相关研究。

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