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Power Allocation in Primary User-Assisted Multi-Channel Cognitive Radio Networks

机译:主用户辅助多通道认知无线电网络中的功率分配

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摘要

This paper addresses power allocation problem for spectrum sharing multi-band cognitive radio networks, where the primary user (PU) allows secondary users (SUs) to transmit simultaneously with it by coding SU's signal together with its own signal. The PU acts as the relay for the SUs and sells its transmit power to the SUs to increase its benefit, and the SUs bid for the PU's transmit power for maximizing their utilities. We propose a power allocation scheme based on traditional ascending clock auction, in which the SUs iteratively submit the optimal power demand to the PU according to the PU's announced price, and the PU updates that price based on all SUs' total power demands. Then we mathematically prove the convergence property of the proposed auction algorithm (i.e., the auction algorithm converges in a finite number of clocks), and show that the proposed power auction algorithm can maximize the social welfare. Finally, the performance of the proposed scheme is verified by the simulation results.
机译:本文解决了频谱共享多频段认知无线电网络的功率分配问题,在该问题中,主要用户(PU)允许次要用户(SU)通过对SU信号及其自身信号进行编码来与其同时发送。 PU充当SU的中继,并向SU出售其发射功率以增加其收益,而SU竞标PU的发射功率以最大化其效用。我们提出了一种基于传统上行时钟拍卖的功率分配方案,其中SU会根据PU宣布的价格向PU迭代地提交最佳功率需求,然后PU会根据所有SU的总功率需求来更新该价格。然后我们在数学上证明了所提出的拍卖算法的收敛性(即拍卖算法在有限数量的时钟中收敛),并证明了所提出的权力拍卖算法可以最大化社会福利。最后,仿真结果验证了所提方案的性能。

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