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Full duplex techniques for 5G networks: self-interference cancellation, protocol design, and relay selection

机译:适用于5G网络的全双工技术:自干扰消除,协议设计和中继选择

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摘要

The wireless research community aspires to conceive full duplex operation by supporting concurrent transmission and reception in a single time/frequency channel for the sake of improving the attainable spectral efficiency by a factor of two as compared to the family of conventional half duplex wireless systems. The main challenge encountered in implementing FD wireless devices is that of finding techniques for mitigating the performance degradation imposed by self-interference. In this article, we investigate the potential FD techniques, including passive suppression, active analog cancellation, and active digital cancellation, and highlight their pros and cons. Furthermore, the troubles of FD medium access control protocol design are discussed for addressing the problems such as the resultant end-to-end delay and network congestion. Additionally, an opportunistic decode-andforward- based relay selection scheme is analyzed in underlay cognitive networks communicating over independent and identically distributed Rayleigh and Nakagami-m fading channels in the context of FD relaying. We demonstrate that the outage probability of multi-relay cooperative communication links can be substantially reduced. Finally, we discuss the challenges imposed by the aforementioned techniques and a range of critical issues associated with practical FD implementations. It is shown that numerous open challenges, such as efficient SI suppression, high-performance FD MAC-layer protocol design, low power consumption, and hybrid FD/HD designs, have to be tackled before successfully implementing FD-based systems.
机译:无线研究团体希望通过在单个时间/频率信道中支持并发传输和接收来构想全双工操作,从而与传统的半双工无线系统家族相比,将可达到的频谱效率提高两倍。在实现FD无线设备时遇到的主要挑战是寻找减轻自干扰造成的性能下降的技术。在本文中,我们研究了潜在的FD技术,包括无源抑制,有源模拟抵消和有源数字抵消,并强调了它们的优缺点。此外,讨论了FD介质访问控制协议设计的麻烦,以解决诸如导致的端到端延迟和网络拥塞的问题。此外,在FD中继的情况下,在通过独立且均匀分布的Rayleigh和Nakagami-m衰落信道进行通信的底层认知网络中,分析了基于机会解码和转发的中继选择方案。我们证明多中继协作通信链路的中断概率可以大大降低。最后,我们讨论了上述技术带来的挑战以及与实际FD实现相关的一系列关键问题。结果表明,成功实施基于FD的系统之前,必须解决许多开放的挑战,例如有效的SI抑制,高性能的FD MAC层协议设计,低功耗和FD / HD混合设计。

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