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Decoupled Uplink and Downlink in a Wireless System With Buffer-Aided Relaying

机译:带有缓冲辅助中继的无线系统中的解耦上行链路和下行链路

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This paper treats a multiuser relay scenario, where multiple user equipments have a two-way communication with a common base station in the presence of a buffer-equipped relay station. Each of the uplink (UL) and downlink (DL) transmission can take place over a direct or over a relayed path. Traditionally, the UL and the DL path of a given two-way link are coupled, that is, either both are direct links or both are relayed links. By removing the restriction for coupling, one opens the design space for a decoupled two-way links. Following this, we devise two protocols: orthogonal decoupled UL/DL buffer-aided (ODBA) relaying protocol and non-ODBA (NODBA) relaying protocol. In NODBA, the receiver can use successive interference cancellation to extract the desired signal from a collision between UL and DL signals. For both protocols, we characterize the transmission decision policies in terms of maximization of the average two-way sum rate of the system. The numerical results show that decoupling association and non-orthogonal radio access lead to significant throughput gains for two-way traffic.
机译:本文讨论了一种多用户中继方案,其中在配备了缓冲区的中继站的情况下,多个用户设备与公用基站进行双向通信。上行链路(UL)和下行链路(DL)传输中的每一个都可以在直接路径或中继路径上进行。传统上,给定双向链路的UL和DL路径是耦合的,也就是说,两者都是直接链路,或者都是中继链路。通过消除耦合限制,可以为解耦的双向链接打开设计空间。在此之后,我们设计了两个协议:正交解耦UL / DL缓冲区辅助(ODBA)中继协议和非ODBA(NODBA)中继协议。在NODBA中,接收器可以使用连续的干扰消除来从UL和DL信号之间的冲突中提取所需信号。对于这两种协议,我们根据系统的平均双向总和率的最大化来描述传输决策策略。数值结果表明,解耦关联和非正交无线电访问可显着提高双向流量的吞吐量。

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