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Resource allocation in OFDMA networks with half-duplex and imperfect full-duplex users

机译:具有半双工和不完美的全双工用户的OFDMA网络中的资源分配

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Recent studies indicate the feasibility of in-band full-duplex (FD) wireless communications, where a wireless radio transmits and receives simultaneously in the same band. Due to its potential to increase the capacity, analyzing the performance of a cellular network that contains full-duplex devices is crucial. In this paper, we consider maximizing the weighted sum-rate of downlink and uplink of a single cell OFDMA network which consists of an imperfect FD base-station (BS) and a mixture of half-duplex and imperfect full-duplex mobile users. To this end, the joint problem of sub-channel assignment and power allocation is investigated and a two-step solution is proposed. A heuristic algorithm to allocate each sub-channel to a pair of downlink and uplink users with polynomial complexity is presented. The power allocation problem is convexified based on the difference of two concave functions approach, for which an iterative solution is obtained. Simulation results demonstrate that when all the users and the BS are perfect FD nodes the network throughput could be doubled, Otherwise, the performance improvement is limited by the inter-node interference and the self-interference. We also investigate the effect of the self-interference cancellation capability and the percentage of FD users on the network performance in both indoor and outdoor scenarios.
机译:最近的研究表明带内全双工(FD)无线通信的可行性,其中无线设备在同一频带中同时进行发送和接收。由于其具有增加容量的潜力,因此分析包含全双工设备的蜂窝网络的性能至关重要。在本文中,我们考虑最大化由不完善的FD基站(BS)以及半双工和不完善的全双工移动用户组成的单小区OFDMA网络的下行链路和上行链路的加权总和。为此,研究了子信道分配和功率分配的联合问题,并提出了两步法。提出了一种启发式算法,用于将每个子信道分配给具有多项式复杂度的一对下行链路和上行链路用户。基于两个凹函数方法之差,凸显了功率分配问题,为此获得了迭代解。仿真结果表明,当所有用户和BS都是完美的FD节点时,网络吞吐量可以增加一倍,否则,性能的提高会受到节点间干扰和自干扰的限制。我们还研究了在室内和室外情况下自干扰消除功能和FD用户百分比对网络性能的影响。

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