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Optimization of cooperative sensing in interference-aware cognitive radio networks over imperfect reporting channel

机译:不完善报告信道上感知干扰的认知无线电网络中协作感知的优化

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Due to the low utilization and scarcity of frequency spectrum in current spectrum allocation methodology, cognitive radio networks (CRNs) have been proposed as a promising method to solve the problem, of which spectrum sensing is an important technology to utilize the precious spectrum resources. In order to protect the primary user from being interfered, most of the related works focus only on the restriction of the missed detection probability, which may causes over-protection of the primary user. Thus the interference probability is defined and the interference-aware sensing model is introduced in this paper. The interference-aware sensing model takes the spatial conditions into consideration, and can further improve the network performance with good spectrum reuse opportunity. Meanwhile, as so many fading factors affect the spectrum channel, errors are inevitably exist in the reporting channel in cooperative sensing, which is improper to be ignored. Motivated by the above, in this paper, we study the throughput tradeoff for interference-aware cognitive radio networks over imperfect reporting channel. By jointly optimizing the sensing time and the number of cooperative users, the maximum throughput can be achieved. Theoretical analysis is given to prove the feasibility of the optimization and computer simulations also shows that the maximum throughput can be achieved when the sensing time and the parameters of cooperative users are both optimized.
机译:由于当前频谱分配方法中频谱的利用率低和稀缺性,已提出认知无线电网络(CRN)作为解决该问题的有前途的方法,其中频谱感测是利用宝贵频谱资源的重要技术。为了保护主要用户不受干扰,大多数相关工作仅集中在漏检概率的限制上,这可能导致主要用户受到过度保护。因此,本文定义了干扰概率,并介绍了感知干扰的感知模型。感知干扰的感知模型考虑了空间条件,可以通过良好的频谱重用机会进一步改善网络性能。同时,由于许多衰落因素影响频谱信道,在协作感知中不可避免地会在报告信道中存在误差,这是不容忽视的。基于以上原因,在本文中,我们研究了不完善报告信道上具有干扰意识的认知无线电网络的吞吐量权衡。通过共同优化检测时间和合作用户数量,可以实现最大吞吐量。通过理论分析证明了优化的可行性,计算机仿真结果表明,同时优化合作用户的感知时间和参数,可以实现最大的吞吐量。

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