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Buffer-aided max-sum relay selection and energy efficiency analysis in OFDM relay systems

机译:OFDM中继系统中的缓冲器辅助最大和中继选择和能效分析

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In this paper, we analyze the energy efficiency (EE) and outage performance in buffer-aided orthogonal frequency division multiplexing (OFDM) relay systems. All the relays adopt the amplify-and-forward (AF) protocol and the transmission from the source to destination on orthogonal subcarriers. We propose the max-sum relay selection scheme, which fully exploits the flexibility offered by both OFDM subcarriers and buffer-aided relays. The max-sum scheme always chooses the strongest available relay which dynamically switching between reception and transmission while. The exact expressions for the EE and the stationary state probability are derived. We adopt a novel joint time-frequency subchannel pairing (TPFP) strategy based on channel quality that obtains both the two gains bring by time pairing and frequency pairing of channels respectively. Numerical results show that the max-sum scheme provides significant improvement on EE and outage performance in buffer-aided OFDM relay system. Furthermore, the performance of the TPFP strategy is shown optimal compared with that of conventional no subchannel pairing systems.
机译:在本文中,我们分析了缓冲辅助正交频分复用(OFDM)中继系统中的能效(EE)和中断性能。所有中继均采用放大转发(AF)协议,并在正交子载波上从源到目的地进行传输。我们提出了最大和中继选择方案,该方案充分利用了OFDM副载波和缓冲区辅助中继所提供的灵活性。最大总和方案始终选择最强的可用中继,同时在接收和传输之间动态切换。推导了EE的精确表达式和稳态概率。我们基于信道质量采用一种新颖的联合时频子信道配对(TPFP)策略,该策略分别获得了信道的时间配对和频率配对带来的两个增益。数值结果表明,最大和方案在缓存辅助的OFDM中继系统中提供了EE和中断性能的显着改善。此外,与传统的无子通道配对系统相比,TPFP策略的性能表现出最佳。

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