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An Efficient IR-HARQ Power Allocation for Relay-Aided Cellular Networks

机译:中继蜂窝网络的高效IR-HARQ功率分配

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Energy-efficient and reliable data transmission is a challenging task in wireless relay networks (WRNs). Energy efficiency in cellular networks has received significant attention because of the present need for reduced energy consumption, thereby maintaining the profitability of networks, which in turn makes these networks "greener". The urban cell topography needs more energy to cover the total area of the cell. The base station does not cover the entire area in a given topography and adding more number of base stations is a cost prohibitive one. Energy-efficient relay placement model which calculates the maximum cell coverage is proposed in this work that covers all sectors and also an energy-efficient incremental redundancy-hybrid automatic repeat request (IR-HARQ) power allocation scheme to improve the reliability of the network by improving the overall network throughput is proposed. An IR-HARQ power allocation method maximizes the average incremental mutual information at each round, and its throughput quickly converges to the ergodic channel capacity as the number of retransmissions increases. Simulation results show that the proposed IR-HARQ power allocation achieves full channel capacity with average transmission delay and maintains good throughput under less power consumption. Also the impact of relaying performance on node distances between relay station and base station as well as between user and relay station and relay height for line of sight conditions are analyzed using full decode and forward (FDF) and partial decode and forward (PDF) relaying schemes. Compared to FDF scheme, PDF scheme provides better performance and allows more freedom in the relay placement for an increase in cell coverage.
机译:节能,可靠的数据传输是无线中继网络(WRN)中一项艰巨的任务。由于当前需要减少能耗,从而保持网络的盈利能力,因此蜂窝网络中的能效受到了极大的关注,这反过来又使这些网络“更环保”。城市小区的地形需要更多的能量来覆盖整个小区。基站不能在给定的地形中覆盖整个区域,而增加基站的数量是一种成本高昂的负担。在这项工作中,提出了一种可计算最大小区覆盖范围的节能中继模型,该模型涵盖了所有扇区,还提出了一种节能增量冗余混合自动重发请求(IR-HARQ)功率分配方案,可通过以下方式提高网络的可靠性提出了提高整体网络吞吐量的建议。 IR-HARQ功率分配方法使每个回合的平均增量互信息最大化,并且随着重传次数的增加,其吞吐量迅速收敛到遍历信道容量。仿真结果表明,所提出的IR-HARQ功率分配可在平均传输延迟的情况下实现全信道容量,并在较少的功耗下保持良好的吞吐量。使用全解码和转发(FDF)和部分解码和转发(PDF)中继,还分析了中继性能对中继站与基站之间以及用户与中继站之间的节点距离以及中继高度对视线状况的影响。计划。与FDF方案相比,PDF方案具有更好的性能,并允许在中继放置中具有更大的自由度,以增加小区覆盖范围。

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