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A Novel Cooperative Full Duplex Device to Device Communication Underlaying Cellular Networks

机译:支持蜂窝网络的设备间通信的新型全双工协作设备

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Full duplex (FD) communication and Device-to-Device (D2D) communication can greatly improve spectral efficiency. In this paper, a new cooperative mode is proposed, here it is named T-mode, in which two D2D users not only transmit signal to each other, but also act as relays to forward the signal from Base Station to two cellular users simultaneously. Thus the two D2D users share the same downlink spectrum resource with the two cellular users. In one timeslot, the system can finish the signal transmission between BS and two cellular users through D2D users' relaying as well as the data transmission between two D2D users when the non-orthogonal multiple access (NOMA) is considered at the D2D users. To optimize the performance of the cooperative model, an optimal power allocation is proposed under the minimum constraint of the transmission rate of D2D links and cellular user links. The optimization of power allocation is a non-convex problem. By loosening self-interference to a fixed value, the non-convex problem is converted into a solvable geometric programming problem. The system sum rate is given and compared with the conventional cooperative mode with three timeslots. The simulation results show that the pro-posed cooperative model with optimal power allocation outperforms the conventional cooperative mode.
机译:全双工(FD)通信和设备到设备(D2D)通信可以大大提高频谱效率。在本文中,提出了一种新的协作模式,即T模式,其中两个D2D用户不仅互相发送信号,而且还充当中继,将信号从基站同时转发给两个蜂窝用户。因此,两个D2D用户与两个蜂窝用户共享相同的下行链路频谱资源。在一个时隙中,当在D2D用户处考虑非正交多址访问(NOMA)时,系统可以通过D2D用户的中继完成BS与两个蜂窝用户之间的信号传输以及两个D2D用户之间的数据传输。为了优化协作模型的性能,提出了在D2D链路和蜂窝用户链路的传输速率的最小约束下的最优功率分配。功率分配的优化是一个非凸问题。通过将自干扰放松为固定值,将非凸问题转换为可解决的几何规划问题。给出了系统求和率,并将其与具有三个时隙的常规协作模式进行比较。仿真结果表明,提出的具有最优功率分配的协作模型优于传统的协作模式。

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