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Exploiting Joint Base Station Equipped Multiple Antenna and Full-Duplex D2D Users in Power Domain Division Based Multiple Access Networks

机译:在基于功率域划分的多址网络中配备联合基站的多天线和全双工D2D用户

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摘要

In this paper, we investigate power domain division-based multiple access (PDMA) to support the base stations (BS) equipped with multiple antennas to serve mobile users. Such a system deploys multiple input single output (MISO)-based wireless transmission and a full-duplex (FD) scheme. Furthermore, such MISO PDMA system consists of BS employing transmit antenna selection to reduce complexity in signal processing at the receivers. We distinguish two kinds of mobile users, device-to-device (D2D) users and traditional users. In such MISO PDMA, there exists a trade-off between outage performance of each PDMA user and power allocation factors. Since the implementation of the FD scheme at PDMA users, bandwidth efficiency will be enhanced despite the existence of self-interference related to such FD. In particular, exact expressions of outage probability are derived to exhibit system performance with respect to D2D users. Finally, valuable results from the simulated parameters together with the analytical results show that MISO PDMA can improve its performance by increasing the number of transmit antennas at the BS.
机译:在本文中,我们研究了基于功率域划分的多址(PDMA),以支持配备有多个天线的基站(BS)为移动用户提供服务。这样的系统部署了基于多输入单输出(MISO)的无线传输和全双工(FD)方案。此外,这种MISO PDMA系统由采用发射天线选择以降低接收机处信号处理的复杂性的BS组成。我们区分两种移动用户,即设备到设备(D2D)用户和传统用户。在这样的MISO PDMA中,在每个PDMA用户的中断性能和功率分配因子之间存在折衷。由于在PDMA用户上实施了FD方案,因此尽管存在与此类FD相关的自干扰,但带宽效率将得到提高。特别地,导出中断概率的精确表达式以展现针对D2D用户的系统性能。最后,来自仿真参数的有价值结果以及分析结果表明,MISO PDMA可以通过增加BS的发射天线数量来提高其性能。

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