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On the uplink spectral efficiency of full-duplex cooperative OFDMA systems

机译:全双工协作式OFDMA系统的上行频谱效率

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In this paper, we develop a resource allocation algorithm for uplink of in-band full-duplex (FD) cellular networks. The FD cellular network is assumed to be based on orthogonal frequency division multiple access (OFDMA) and consists of a base station communicating with multiple users. Some of the users in the network act as relay for other users and help them to transmit their data to the base station. These relays are FD and work based on amplify and forward (AF) protocol. By appropriate selection of the relays and optimized allocation of subcarriers and powers to all users, we try to maximize the total sum rate of the network. During this optimization, we also impose some constraints on the users' quality of service (QoS) and power. We propose a new algorithm to select the best relays based on the users' maximum data rate and also use Linear Assignment Problem Jonker-Volgenant (LAPJV) algorithm for subcarrier assignment. It is proved that the resulting optimization problem can be converted to a convex problem, and hence it can be solved by standard numerical methods. The simulation results demonstrate the effect of the proposed scheme on the sum rate and coverage of the network.
机译:在本文中,我们为带内全双工(FD)蜂窝网络的上行链路开发了一种资源分配算法。假设FD蜂窝网络基于正交频分多址(OFDMA),并且由与多个用户通信的基站组成。网络中的某些用户充当其他用户的中继,并帮助他们将数据传输到基站。这些继电器是FD,并基于放大转发(AF)协议工作。通过继电器的适当选择和子载波和权力,所有用户的优化配置,我们尽量让网络的总和率。在此优化过程中,我们还对用户的服务质量(QoS)和功能施加了一些约束。我们提出了一种基于用户的最大数据速率来选择最佳中继的新算法,并且还将线性分配问题鸡群-Volgenant(LAPJV)算法用于子载波分配。事实证明,由此产生的优化问题可以转化为凸问题,因此可以通过标准数值方法求解。仿真结果证明了该方案对网络的总速率和覆盖率的影响。

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