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Capacity Gain of Full Duplex Self-Backhauling and Opportunistic Full Duplex Self-Backhauling

机译:全双工自我回程能力增益和机会性全双工自我回程

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This paper investigates the capacity gain of full duplex (FD) self-backhauling over the half duplex (HD) counterpart in downlink cellular systems, and then proposes an opportunistic FD scheme. The first step is to derive the capacity gain of FD self-backhauling over the HD counterpart as a function of the system parameters in a computationally tractable form. Unlike previous studies on the capacity of FD self-backhauling, a practical constraint is imposed so that the end-to-end link achieves a target signal-to-interference-plus-noise ratio (SINR) for a successful link connection. Also, a condition under which FD is more beneficial than HD is derived. Specifically, the minimum allowable self interference cancellation factor and the maximum allowable cell radius for the benefit of FD are derived as an explicit function of system parameters. Their dependencies on the system parameters are investigated and compared with counterparts derived for single-hop point-to-point links. Lastly, to overcome the weak points of FD and HD, this paper proposes a user-wise opportunistic FD (OFD) self-backhauled scheme. To this end, an instantaneous channel gain-based FD/HD switching rule is derived from a condition under which FD cannot instantaneously satisfy the target SINR. We confirm the substantial capacity gain of the proposed user-wise instantaneous OFD over a cell-wise static duplex switching scheme, as well as the fixed duplex (HD or FD) schemes. When compared to the static duplex switching scheme, the proposed OFD is most beneficial at the boundary of HD-preferred and FD-preferred regions. Based on this, a system-level guideline is proposed for selecting the most practical scheme among OFD, FD, and HD by trading off capacity gain and switching overhead. Extensive simulation results are provided to confirm the correctness of the derivations and the related investigations.
机译:本文调查了在下行链路蜂窝系统中半双工(HD)对应上的全双工(FD)的容量增益,然后提出了机会的FD方案。第一步是通过以计算易操作形式的系统参数的函数来导出通过HD对应物的FD自回程的容量增益。与先前关于FD自回程的容量的研究不同,施加实际约束,使得端到端链路实现了用于成功链接连接的目标信号 - 干扰加噪声比(SINR)。而且,推导出FD的态度比HD更有益。具体地,推导出FD的益处的最小允许自干扰消除因子和最大允许的小区半径作为系统参数的显式功能。他们对系统参数的依赖性进行了研究,并与用于单跳点对点链路导出的对应物进行比较。最后,为了克服FD和HD的弱点,本文提出了一种用户明智的机会机构FD(OFD)自我回程方案。为此,瞬时信道增益的FD / HD切换规则来自FD不能瞬间满足目标SINR的条件导出。我们通过细胞 - 明智的双工切换方案以及固定的双工(HD或FD)方案来确认所提出的用户明智的瞬时瞬间的大量容量增益。与静态双工切换方案相比,所提出的OFD在高清优选和FD优选地区的边界上最有益。基于此,提出了一种通过交易容量增益和开关的开销来选择ofd,fd和HD之间最实用的方案的系统级指南。提供了广泛的仿真结果,以确认衍生物的正确性和相关的调查。

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