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On energy efficiency and optimum resource allocation of relay transmissions in the low-power regime

机译:低功率状态下中继传输的能量效率和最佳资源分配

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Relay links are expected to play a critical role in the design of wireless networks. This paper investigates the energy efficiency of relay communications in the low-power regime under two different scenarios: when the relay has unlimited power supply and when it has limited power supply. A system with a source node, a destination node, and a single relay operating in the time division duplex (TDD) mode was considered. Analysis and simulations are used to compare the energy required for transmitting one information bit in three different relay schemes: amplify and forward (AnF), decode and forward (DnF), and block Markov coding (BMC). Relative merits of these relay schemes in comparison with direct transmissions (direct Tx) are discussed. The optimal allocation of power and transmission time between source and relay is also studied.
机译:中继链路有望在无线网络的设计中发挥关键作用。本文研究了两种不同情况下低功率状态下继电器通信的能效:继电器具有无限的电源供应时和继电器具有有限的电源供应时。考虑了具有源节点,目标节点和以时分双工(TDD)模式运行的单个中继的系统。分析和模拟用于比较在三种不同的中继方案中传输一个信息位所需的能量:放大和转发(AnF),解码和转发(DnF)和块马尔可夫编码(BMC)。与直接传输(直接Tx)相比,讨论了这些中继方案的相对优点。还研究了源与中继之间功率和传输时间的最佳分配。

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