满足信道目标的混合多信道协同频谱感知

B. Senadji, Kevin Chang
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摘要

多主用户信道的频谱感知是认知无线电网络中的一项重要功能。本文提出了一种多通道协同频谱感知的最优感知资源分配算法。信道目标作为目标和约束来实现,以确保为辅助用户网络操作检测到预定数量的空信道。根据主用户流量参数,计算出满足通道目标所需要感知的最小主用户通道数。我们通过将次要用户节点分组成集群,并分配每个集群感知不同的主用户通道来实现混合感知结构。然后,我们解决资源分配问题,以找到最佳的感知配置和节点分配,以最小化感知持续时间。仿真结果表明,与现有研究中需要较长感知时间且不能保证目标的算法相比,该算法需要最短的感知时间来实现信道目标。
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Hybrid multi-channel cooperative spectrum sensing to satisfy channel target
Spectrum sensing of multiple primary user channels is a crucial function in cognitive radio networks. In this paper we propose an optimal, sensing resource allocation algorithm for multi-channel cooperative spectrum sensing. The channel target is implemented as an objective and constraint to ensure a pre-determined number of empty channels are detected for secondary user network operations. Based on primary user traffic parameters, we calculate the minimum number of primary user channels that must be sensed to satisfy the channel target. We implement a hybrid sensing structure by grouping secondary user nodes into clusters and assign each cluster to sense a different primary user channels. We then solve the resource allocation problem to find the optimal sensing configuration and node allocation to minimise sensing duration. Simulation results show that the proposed algorithm requires the shortest sensing duration to achieve the channel target compared to existing studies that require long sensing and cannot guarantee the target.
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