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High-efficient cooperative relaying with wireless powered source and relay

机译:高效的合作源与无线动力源和继电器

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We consider a cooperative relaying system with source (S) and relay (R) capable of harvesting wireless energy. A power beacon is placed between S and R to transfer wireless power to charge their batteries. Both the time-switching and the power-splitting methods are adopted to facilitate the energy harvesting (EH) at S and R. With the assumption that the predefined energy signal can be canceled by the receivers, we proposed to simultaneously transfer power and signal to strive for more opportunities of EH to greatly boost the amount of harvested energy at S and R. Using the harvested energy, S and R can cooperatively transmit data to the destination according to the decode-and-forward or the amplify-and-forward protocol. We analyze the average amount of harvested energy at S and R, and properly set their transmit powers to make the average amount of consumed energy equal the average amount of harvested energy. The system throughput of the proposed EH-based relaying schemes are analyzed. Extensive numerical results are provided to compare our proposed schemes and reveal the impacts of key system parameters. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们考虑具有能够收集无线能量的源和继电器(R)的合作开关系统。 POWER BEACON放置在S和R之间以传输无线电源以对其电池充电。采用时间切换和功率分裂方法都采用,促进S和R的能量收集(EH)。假设预定义能量信号可以被接收器取消,我们提出同时传输电力和信号努力实现更多机会,大大提高了S和R的收获量。使用收获的能量,S和R可以根据解码和转发或扩增和前进协议协同地将数据传输到目的地。我们分析了S和R的平均收获能量的量,并适当地设定了它们的发射功率,使得平均消耗能量的量等于收获能量的平均量。分析了所提出的基于EH的中继方案的系统吞吐量。提供了广泛的数值结果,以比较我们提出的计划并揭示关键系统参数的影响。 (c)2019 Elsevier B.v.保留所有权利。

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