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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Power Allocation for Full-Duplex Relaying-Based D2D Communication Underlaying Cellular Networks
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Power Allocation for Full-Duplex Relaying-Based D2D Communication Underlaying Cellular Networks

机译:基于全双工中继的D2D通信支持蜂窝网络的功率分配

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Device-to-device (D2D) communications allow direct transmissions between two proximate user equipments (UEs), which can improve local services in cellular networks. Considering full-duplex (FD) relaying can achieve higher spectrum and energy efficiency than half-duplex (HD) relaying, we propose a new D2D communication scheme that allows D2D links to underlay cellular downlink by assigning D2D transmitters as FD relays to assist cellular downlink transmissions. The system objective is to optimize the achievable rates for the D2D users while fulfilling the minimum rate requirements of the cellular users. To this end, we first derive the achievable rates for both the D2D users and the cellular users. Then we accomplish the system target by optimizing the transmission powers at the base station (BS) and at the D2D transmitter. Under the aggregate power constraint, we can solve the optimal power-allocation problem in closed form. The simulation results show that the proposed FD relaying-based D2D communication scheme outperforms the traditional cellular communication mode and the existing HD relaying-based D2D communication scheme in the maximal achievable rate.
机译:设备到设备(D2D)通信允许在两个邻近的用户设备(UE)之间直接传输,这可以改善蜂窝网络中的本地服务。考虑到全双工(FD)中继可以比半双工(HD)中继获得更高的频谱和能效,我们提出了一种新的D2D通信方案,该方案允许D2D链路通过将D2D发送器指定为FD中继来支持蜂窝下行链路,以帮助蜂窝下行链路传输。系统目标是优化D2D用户的可达到速率,同时满足蜂窝用户的最低速率要求。为此,我们首先导出D2D用户和蜂窝用户的可实现速率。然后,我们通过优化基站(BS)和D2D发射机的发射功率来实现系统目标。在总功率约束下,我们可以采用封闭形式解决最优功率分配问题。仿真结果表明,所提出的基于FD中继的D2D通信方案在最大可实现速率上优于传统的蜂窝通信模式和现有的基于HD中继的D2D通信方案。

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