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Uplink Achievable Rate and Power Allocation in Cooperative LTE-Advanced Networks

机译:协作式LTE-Advanced网络中的上行链路可达到的速率和功率分配

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This paper studies the achievable rate and power allocation to improve the uplink (UL) spectrum efficiency in a Long-Term Evolution Advanced (LTE-A) cooperative cellular network with the deployment of Type-II in-band decode-and-forward (DF) relay stations (RSs). The physical-layer UL transmission technology is based on single-carrier frequency-division multiple access (SC-FDMA) with frequency-domain equalization (FDE). Different from the downlink (DL) orthogonal FDMA system, signals on all subcarriers in the SC-FDMA system are transmitted sequentially rather than in parallel; thus, the user's achievable rate is not simply the summation of the rates on all allocated subcarriers. Moreover, each user equipment (UE) device has its own transmission power constraint instead of a total power constraint at the base station in the DL case. Therefore, the UL resource allocation problem in the LTE-A system is more challenging. To this end, we first derive the achievable rates of the SC-FDMA system with two commonly used FDE techniques, namely, zero-forcing (ZF) equalization and minimum-mean-square-error (MMSE) equalization, based on the joint superposition coding for cooperative relaying. We then propose optimal power allocation schemes among subcarriers at both the UE and RS to maximize the overall throughput of the system. Both theoretical analysis and numerical results demonstrate that our proposed power allocation schemes can drastically improve system throughput.
机译:本文研究了通过部署II型带内解码和转发(DF)来提高长期演进高级(LTE-A)协作蜂窝网络中的上行链路(UL)频谱效率的可实现速率和功率分配)中继站(RSs)。物理层UL传输技术基于具有频域均衡(FDE)的单载波频分多址(SC-FDMA)。与下行链路(DL)正交FDMA系统不同,SC-FDMA系统中所有子载波上的信号是顺序发送的,而不是并行发送的。因此,用户可达到的速率不只是所有分配的子载波上速率的总和。而且,在DL情况下,每个用户设备(UE)设备具有其自己的发送功率约束,而不是基站处的总功率约束。因此,LTE-A系统中的UL资源分配问题更具挑战性。为此,我们首先基于联合叠加,使用两种常用的FDE技术,即零强迫(ZF)均衡和最小均方误差(MMSE)均衡,得出SC-FDMA系统的可实现速率。协作中继的编码。然后,我们在UE和RS的子载波之间提出最佳功率分配方案,以使系统的整体吞吐量最大化。理论分析和数值结果均表明,我们提出的功率分配方案可以大大提高系统吞吐量。

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