认知无线电网络中具有干扰约束的最优频谱感知框架

Hyuk Wu, Dong-Jun Lee, Changtaek Shin
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引用次数: 2

摘要

在认知无线电网络中,一些关于最优频谱感知框架的研究工作已经解决了在限制主用户信号干扰的情况下,使辅助用户的吞吐量最大化的问题。当给出主用户信号的合理统计模型时,可以估计主用户信号的干扰量,并用于产生最佳的频谱感知和数据传输时间。然而,以往的研究在对主用户信号的干扰建模方面存在一些缺陷。在本研究中,我们将更精确的主用户信号建模应用于频谱感知框架。该方法利用Chapman-Kolmogorov方程对主用户信号在某一时刻的行为进行建模,并推导出最优频谱感知框架。数值计算结果表明,该方法比以前的方法具有更高的二次用户吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal spectrum sensing framework with interference constraint in cognitive radio networks
In cognitive radio networks, several research works on optimal spectrum sensing framework have addressed maximization of throughput of secondary users under constraints on interference incurred to primary user signal. When a plausible statistical modeling of primary user signal is given, the amount of interference to primary user signal can be estimated and used to produce the optimal spectrum sensing and data transmission time. However, previous works on this area have some flaws in the modeling of interference to primary user signal. In this study we apply more accurate modeling of primary user signal to the spectrum sensing framework. Our method uses Chapman-Kolmogorov equation to model the behavior of primary user signal in a certain instant and derive the optimal spectrum sensing framework. Numerical results show that the proposed method results in higher throughput of secondary users than previous methods.
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