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Channel allocation under uncertain primary users for delay sensitive secondary users

机译:在不确定的主要用户下为延迟敏感的次要用户分配信道

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For reducing the channel switching frequency due to uncertain and frequent primary users' interruptions, we design a nonparametric channel allocation algorithm which can effectively manage the spectrum resources in distributed cognitive radio networks and serve for delay-sensitive data traffics. In the proposed algorithm, an infinite Gaussian mixture model is used to get the posterior decision from the feature spaces of the channel idle duration and the primary user's frequency channel, while the collapsed Gibbs sampling is applied for fast convergence. Experimental and simulation results demonstrate that the proposed channel allocation algorithm outperforms the random channel allocation method and the idle probability based channel allocation algorithm in terms of throughput and packet drops.
机译:为了减少由于不确定和频繁的主要用户中断而导致的信道切换频率,我们设计了一种非参数信道分配算法,该算法可以有效地管理分布式认知无线电网络中的频谱资源,并用于对延迟敏感的数据业务。在该算法中,使用无限高斯混合模型从信道空闲持续时间和主要用户频道的特征空间中获取后验决策,而折叠吉布斯采样则用于快速收敛。实验和仿真结果表明,所提出的信道分配算法在吞吐量和丢包方面均优于随机信道分配方法和基于空闲概率的信道分配算法。

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