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Energy-Efficient Transmission for Uplink NOMA in Wireless-Powered D2D Communications

机译:无线供电D2D通信中链路NOMA的节能传输

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We study energy-efficient resource allocation of overlaying device-to-device (D2D) communication in wireless cellular network. In this system, two D2D users first harvest wireless energy from a base station (BS) and then the far D2D user transmits information to the near D2D user. Besides, the near D2D user transmits information of both two users to the BS via NOMA scheme. Due to the interference of NOMA scheme, maximizing energy efficiency (bits/Joule) of the D2D system is a non-convex problem. We formula the problem taking into account the quality-of-service requirements of the D2D users. Exploiting the fractional programming theory and difference of convex (DC) programming, we obtain a sub-optimal resource allocation policy. Our solution reveals that the optimal energy-efficient D2D communication should occur if the far D2D user transmits information to the near D2D user with the minimal required rate. Simulation results are provided to demonstrate the advantage of energy efficiency of the proposed algorithm comparing with two baseline schemes.
机译:我们研究无线蜂窝网络中的叠加设备到设备(D2D)通信的节能资源分配。在该系统中,两个D2D用户首先收集来自基站(BS)的无线能量,然后将远D2D用户发送到近D2D用户的信息。此外,近D2D用户通过NOMA方案将两个用户的信息发送到BS。由于NOMM方案的干扰,D2D系统的最大化能效(位/焦耳)是非凸面问题。考虑到D2D用户的服务质量要求,我们配方备份问题。利用分数编程理论和凸(DC)编程的差异,我们获得了次优资源分配策略。我们的解决方案表明,如果远D2D用户以最小所需速率将信息传输到近D2D用户,则应发生最佳节能D2D通信。提供了仿真结果以证明所提出的算法的能量效率的优点与两种基线方案进行比较。

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