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An Energy-Aware Retransmission Approach in SWIPT-Based Cognitive Relay Systems

机译:基于SWIPT的认知中继系统中的能量感知重传方法

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In this paper, cooperative spectrum sharing is considered between a primary user (PU) and a secondary user (SU), where the off-the-grid secondary transmitter (ST) serves as a cognitive relay to forward both the received primary and secondary signals by exploiting simultaneous wireless information and power transfer (SWIPT). Based on a two-phase relaying model, power splitting is adopted by the ST for energy harvesting and information processing in the first phase. Next, the harvested energy at the ST is used to amplify-and-forward a linearly weighted combination of the primary and secondary signals, in the second phase. To enhance the reliability of the system and utilize the energy harvested more wisely, an energy-aware retransmission (EAR) scheme is proposed in the first phase to guarantee that a certain minimum amount of energy is collected by the ST before launching the second phase. Both outage and throughput performances are theoretically analyzed for the PU and the SU. Simulation results demonstrate that a win–win relationship is built between the PU and the SU under proper parameter configurations, and the proposed EAR scheme can bring additional performance gains in unfavorable conditions imposed under
机译:在本文中,主要用户(PU)和次要用户(SU)之间考虑了协作频谱共享,其中离网次要发射机(ST)用作认知中继,以转发接收到的主要和次要信号通过同时利用无线信息和电力传输(SWIPT)。基于两阶段中继模型,ST在第一阶段采用功率分配进行能量收集和信息处理。接下来,在第二阶段中,ST处收集的能量用于放大和转发初级和次级信号的线性加权组合。为了提高系统的可靠性并更明智地利用所收集的能量,在第一阶段提出了一种能量感知重传(EAR)方案,以确保ST在启动第二阶段之前收集到一定数量的最小能量。理论上分析了PU和SU的中断性能和吞吐量性能。仿真结果表明,在适当的参数配置下,PU和SU之间建立了双赢的关系,并且所提出的EAR方案可以在不利条件下施加额外的性能增益

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