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Energy-Efficient and Low Signaling Overhead Cooperative Relaying With Proactive Relay Subset Selection

机译:具有主动继电器子集选择功能的节能,低信号架空协同继电器

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摘要

Energy efficient wireless communications have recently received much attention, due to the ever-increasing energy consumption of wireless communication systems. In this paper, we propose a new energy-efficient cooperative relaying scheme that selects a subset of relays before data transmission, through proactive participation of available relays using their local timers. We perform theoretical analysis of energy efficiency under maximum transmission power constraint, using practical data packet length, and taking account of the overhead for obtaining channel state information, relay selection, and cooperative beamforming. We provide the expression of average energy efficiency for the proposed scheme, and identify the optimal number and location of relays that maximize energy efficiency of the system. A closed-form approximate expression for the optimal position of relays is derived. We also perform overhead analysis for the proposed scheme and study the impact of data packet lengths on energy efficiency. The analytical and simulation results reveal that the proposed scheme exhibits significantly higher energy efficiency as compared to direct transmission, best relay selection, all relay selection, and a state-of-the-art existing cooperative relaying scheme. Moreover, the proposed scheme reduces the signaling overhead and achieves higher energy savings for larger data packets.
机译:由于无线通信系统的能耗不断增加,高能效的无线通信最近受到了广泛关注。在本文中,我们提出了一种新的节能协作中继方案,该方案通过使用本地计时器主动参与可用的中继,从而在数据传输之前选择中继的子集。我们使用实际的数据包长度,并在考虑获得信道状态信息,中继选择和协作波束成形的开销的情况下,对最大传输功率约束下的能效进行了理论分析。我们为提出的方案提供平均能效的表达式,并确定使系统能效最大化的继电器的最佳数量和位置。推导了继电器最佳位置的闭式近似表达式。我们还对建议的方案进行开销分析,并研究数据包长度对能效的影响。分析和仿真结果表明,与直接传输,最佳中继选择,所有中继选择以及最新的现有协作中继方案相比,该方案具有更高的能源效率。此外,所提出的方案减少了信令开销并且对于较大的数据分组实现了更高的能量节省。

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