Power allocation in multi-channel cognitive radio networks with channel assembling

Lei Jiao, Meisam Razaviyayn, Enbin Song, Z. Luo, F. Li
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引用次数: 3

Abstract

Consider power allocation for Secondary User (SU) packet transmissions over multiple channels with variable Primary User (PU) arrival rates in cognitive radio networks. Two problems are studied in this paper: The first one is to minimize the collision probability with PUs and the second one is to maximize the data rate while keeping the collision probability bounded. It is shown that the optimal solution for the first problem is to allocate all power onto the best channel based on a certain criterion. The second problem with a per-channel power budget constraint is proven to be NP-hard and therefore a pseudo-polynomial time solution for the problem is proposed. When a total power budget for all channels is imposed in the second problem, a computationally efficient algorithm is introduced. The proposed algorithms are validated by numerical experiments.
信道聚合下多信道认知无线网络的功率分配
考虑认知无线网络中具有可变主用户(PU)到达率的多个信道上的辅助用户(SU)数据包传输的功率分配。本文研究了两个问题:第一个问题是最小化与pu的碰撞概率,第二个问题是在保持碰撞概率有界的情况下最大化数据速率。结果表明,第一个问题的最优解是根据一定的准则将所有功率分配到最佳信道上。第二个具有单通道功率预算约束的问题被证明是np困难的,因此提出了该问题的伪多项式时间解。当在第二个问题中施加所有通道的总功率预算时,引入了一种计算效率高的算法。数值实验验证了算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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