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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Joint Beamforming and Power Allocation for Multiple Access Channels in Cognitive Radio Networks
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Joint Beamforming and Power Allocation for Multiple Access Channels in Cognitive Radio Networks

机译:认知无线电网络中多个接入信道的联合波束成形和功率分配

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A cognitive radio (CR) network refers to a secondary network operating in a frequency band originally licensed/allocated to a primary network consisting of one or multiple primary users (PUs). A fundamental challenge for realizing such a system is to ensure the quality of service (QoS) of the PUs as well as to maximize the throughput or ensure the QoS, such as signal-to-interference-plus-noise ratios (SINRs), of the secondary users (SUs). In this paper, we study singleinput multiple output multiple access channels (SIMO-MAC) for the CR network. Subject to interference constraints for the PUs as well as peak power constraints for the SUs, two optimization problems involving a joint beamforming and power allocation for the CR network are considered: the sum-rate maximization problem and the SINR balancing problem. For the sum-rate maximization problem, zero-forcing based decision feedback equalizers are used to decouple the SIMO-MAC, and a capped multi-level (CML) water-filling algorithm is proposed to maximize the achievable sum-rate of the SUs for the single PU case. When multiple PUs exist, a recursive decoupled power allocation algorithm is proposed to derive the optimal power allocation solution. For the SINR balancing problem, it is shown that, using linear minimum mean-square-error receivers, each of the interference constraints and peak power constraints can be completely decoupled, and thus the multi-constraint optimization problem can be solved through multiple single-constraint subproblems. Theoretical analysis for the proposed algorithms is presented, together with numerical simulations which compare the performances of different power allocation schemes.
机译:认知无线电(CR)网络是指在最初许可/分配给由一个或多个主要用户(PU)组成的主要网络的频带中操作的次要网络。实现这样的系统的基本挑战是确保PU的服务质量(QoS),以及最大程度地提高吞吐量或确保QoS,例如信噪比(SINR)。二级用户(SU)。在本文中,我们研究了CR网络的单输入多输出多路访问通道(SIMO-MAC)。受PU的干扰约束以及SU的峰值功率约束的影响,考虑了两个优化问题,包括联合波束成形和CR网络的功率分配:总速率最大化问题和SINR平衡问题。对于总速率最大化问题,使用基于零强迫的决策反馈均衡器对SIMO-MAC进行解耦,并提出了一种有上限的多级(CML)充水算法,以最大程度地提高SU的可实现总速率。单个PU盒。当存在多个PU时,提出了一种递归解耦功率分配算法,以推导最优功率分配方案。对于SINR平衡问题,研究表明,使用线性最小均方误差接收器,可以将干扰约束和峰值功率约束中的每一个完全解耦,从而可以通过多个单信号来解决多约束优化问题。约束子问题。提出了针对所提出算法的理论分析,并进行了数值模拟,比较了不同功率分配方案的性能。

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