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Joint optimization of rate and outer loop power control for CDMA-based cognitive radio networks

机译:基于CDMA的认知无线电网络的速率和外环功率控制的联合优化

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In this paper, we consider a CDMA-based Cognitive Radio (CR) system that involves joint optimization of Outer Loop Power Control (OLPC) and rate control of a cognitive user using Variable Spreading Factors (VSFs) which enhances the average spectral efficiency (ASE) of these users. The cognitive radio system in this paper consists of a number of licensed (primary) users and a cognitive (secondary) user. The bandwidth of the licensed user is allowed to be accessed by the cognitive user under limited interference constraint. Primary and cognitive users employ Code-Division Multiple-Access (CDMA) technology. Considering Nakagami-m flat-fading channels we optimize the system throughput in terms of cognitive user's ASE under average transmission power constraint and pre-defined interference limit on primary receiver. Numerical results affirm that by using joint-optimization of rate and OLPC in the CR system, the cognitive user's throughput in high SNRs achieves considerable gain compared to a system that does not employ OLPC.
机译:在本文中,我们考虑了一种基于CDMA的认知无线电(CR)系统,该系统涉及使用可变扩展因子(VSF)联合优化外环功率控制(OLPC)和认知用户的速率,从而提高平均频谱效率(ASE) )的这些用户。本文中的认知无线电系统由许多许可(主要)用户和认知(次要)用户组成。认知用户可以在有限的干扰约束下访问许可用户的带宽。主要和认知用户采用码分多址(CDMA)技术。考虑到Nakagami-m平坦衰落信道,我们根据认知用户的ASE在平均传输功率约束和对主接收机的预定义干扰限制下优化了系统吞吐量。数值结果证实,通过在CR系统中使用速率和OLPC的联合优化,与不使用OLPC的系统相比,认知用户在高SNR中的吞吐量获得了可观的收益。

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