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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Noncooperative Multicell Resource Allocation of FBMC-Based Cognitive Radio Systems
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Noncooperative Multicell Resource Allocation of FBMC-Based Cognitive Radio Systems

机译:基于FBMC的认知无线电系统的非合作多小区资源分配

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摘要

Cognitive radio (CR) has been proposed to improve spectral efficiency while avoiding interference with licensed users. In this paper, we propose a resource allocation (RA) algorithm to perform uplink frequency allocation and power allocation among noncooperative multicells with multiuser per cell in CR systems. The maximization of the total information rate of multiple users in one cell is considered for the Rayleigh channel with path loss subject to the power constraint on each user. Since the optimization formulation for rate maximization of multiple users in each cell is an integer optimization problem, the multiple access channel (MAC) technique is proposed. With the aid of MAC, the original integer optimization problem is transformed into a concave optimization problem, thereby establishing a distributed game model in which the base station of each cell, which tries to maximize the sum rate of its own users, is a player. The proposed game-theoretic algorithm for distributed multiuser power allocation is viewed as an extension of the iterative water-filling algorithm, which is applied to distributed single-user power allocation. From the perspective of effectiveness, the proposed game-theoretic algorithm based on the MAC technique is compared with the traditional algorithm based on frequency-division multiplexing access (FDMA). Final numerical results show that the MAC-based RA algorithm can achieve more information rate and better convergence performance than the FDMA-based RA algorithm.
机译:已经提出认知无线电(CR)来提高频谱效率,同时避免对许可用户的干扰。在本文中,我们提出了一种资源分配(RA)算法,以在CR系统中在每个小区具有多用户的非协作多小区之间执行上行链路频率分配和功率分配。对于瑞利信道,考虑了一个小区中多个用户的总信息速率的最大化,其路径损耗受每个用户的功率限制。由于用于每个小区中多个用户的速率最大化的优化公式是整数优化问题,因此提出了多路访问信道(MAC)技术。借助于MAC,将原始整数优化问题转换为凹优化问题,从而建立了一个分布式游戏模型,其中试图最大化其自身用户的总速率的每个小区的基站都是玩家。提出的用于分布式多用户功率分配的博弈论算法被视为迭代注水算法的扩展,该算法被应用于分布式单用户功率分配。从有效性的角度出发,将基于MAC技术的博弈论算法与基于频分复用访问(FDMA)的传统算法进行了比较。最终数值结果表明,与基于FDMA的RA算法相比,基于MAC的RA算法可以获得更高的信息速率和更好的收敛性能。

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