Combined Power Allocation in Cognitive Radio-Based Relay-Assisted Networks

Xiaoyu Qiao, Z. Tan, Shaoyi Xu, Jiajun Li
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引用次数: 8

Abstract

The primary-secondary user combined power allocation problem is considered in this paper. The problem is addressed in cognitive radio-based relay-assisted networks, where the primary user and the secondary user coexist and influent on each other, and the relays are expected to undertake partial tasks of collecting channel information, computing the optimal power allocation strategy, and informing the users about the obtained transmit power results. The power allocation for primary and secondary user is modeled as a noncooperative game. The existence of the Nash equilibrium of the game is established, as well as its uniqueness. A relay-assisted iterative algorithm, which can be performed through the cooperation of the base station and the relays, is proposed to efficiently reach the Nash equilibrium. Numerical results demonstrate the convergence of the proposed iterative algorithm, and also the performance improvement of the power allocation.
基于认知无线电中继辅助网络的联合功率分配
本文研究了主从用户联合功率分配问题。在基于认知无线电的中继辅助网络中,主要用户和次要用户共存并相互影响,并且期望中继承担收集信道信息,计算最优功率分配策略以及将获得的发射功率结果通知用户的部分任务。将主从用户的电力分配建模为非合作博弈。建立了博弈纳什均衡的存在性及其唯一性。提出了一种中继辅助迭代算法,该算法通过基站和中继的协同来实现,从而有效地达到纳什均衡。数值结果证明了该迭代算法的收敛性和功率分配性能的提高。
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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