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Improved spectrum sensing and achieved throughputs in cognitive radio networks

机译:认知无线电网络中的频谱感测得到改善并实现了吞吐量

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State of the art spectrum sensing methods evaluate sensing performance only based on correct detection of the presence of the primary user's signal. As a first step, we propose a more realistic framework that also takes the correct detection of the absence of primary user's signal into account for spectrum sensing performance evaluation. More precisely, by using the above framework, we select energy detection spectrum sensing parameters so as to minimize a cost function leading to an optimal operating point over the widely-used receiver operating characteristic curve. In a second step, by using the parameters obtained in the first step, we calculate the information rates achieved by both the cognitive and the primary users. These rates are compared to those provided by an ideal (interference-free) spectrum sensing. Numerical results show that the proposed improved spectrum sensing outperforms conventional spectrum sensing techniques in terms of total achievable throughputs, without any increase in the cognitive radio complexity.
机译:现有技术的频谱感测方法仅基于对主要用户信号的存在的正确检测来评估感测性能。作为第一步,我们提出了一个更现实的框架,该框架还考虑了对主要用户信号缺失的正确检测,以进行频谱感测性能评估。更精确地,通过使用上述框架,我们选择能量检测频谱感测参数,以最小化导致广泛使用的接收机工作特性曲线上的最优工作点的成本函数。在第二步中,通过使用在第一步中获得的参数,我们计算认知用户和主要用户所达到的信息率。将这些速率与理想(无干扰)频谱感应所提供的速率进行比较。数值结果表明,在总可实现吞吐量方面,提出的改进的频谱感测优于传统频谱感测技术,而认知无线电的复杂性没有任何增加。

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