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Design and implementation of spectrum sensing for cognitive radios with a frequency-hopping primary system

机译:具有跳频主系统的认知无线电频谱感知的设计和实现

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In this work, spectrum sensing for cognitive radios is considered in the presence of multiple Primary Users (PU) using frequency-hopping communication over a set of frequency bands. The detection performance of the Fast Fourier Transform (FFT) Average Ratio (FAR) algorithm is obtained in closed-form, for a given FFT size and number of PUs. The effective throughput of the Secondary Users (SU) is formulated as an optimization problem with a constraint on the maximum allowable interference on the primary network. Given the hopping period of the PUs, the sensing duration that maximizes the SU throughput is derived. The results are validated using Monte Carlo simulations. Further, an implementation of the FAR algorithm on the Lyrtech (now, Nutaq) small form factor software defined radio development platform is presented, and the performance recorded through the hardware is observed to corroborate well with that obtained through simulations, allowing for implementation losses.
机译:在这项工作中,在多个主要用户(PU)的存在下,使用一组频段上的跳频通信,考虑了认知无线电的频谱感知。对于给定的FFT大小和PU数量,快速傅立叶变换(FFT)平均比率(FAR)算法的检测性能以封闭形式获得。次要用户(SU)的有效吞吐量被表述为一个优化问题,它对主要网络上的最大允许干扰有所限制。给定PU的跳变周期,得出最大化SU吞吐量的感测持续时间。使用蒙特卡洛模拟验证了结果。此外,提出了在Lyrtech(现为Nutaq)小型软件定义的无线电开发平台上实现FAR算法的方法,观察到通过硬件记录的性能与通过仿真获得的性能很好地吻合,从而导致实现损失。

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