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Performance Analysis of Energy Assisted Relaying Techniques in Cooperative Wireless Networks

机译:协同无线网络中能量辅助中继技术的性能分析

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Future 5G wireless networks demands for higher energy efficiency and spectral efficiency. To improve the energy efficiency of the wireless networks over fading channels, RF energy harvesting technique can be employed. In this paper, Energy-assisted Amplify and Forward (EAF) cooperative relay protocol has been proposed. To minimize the energy consumption of the battery, Power-Splitting (PS) based Simultaneous Wireless Information and Power Transfer (SWIPT) technique has been adopted in the relay nodes of cooperative wireless networks. The PS technique splits the received signal from the Access Point (AP) into two streams of different power. First stream goes to the information receiver module and the next stream goes to the energy harvester module in the relay. Analytical model and equations have been developed for the performance parameters such as capacity and throughput of the EAF protocol and they have been compared with the Energy-assisted Decode and Forward (EDF) protocol using MATLAB R2013a. It is observed that the capacity and throughput of the EAF relay protocol is 8.6% and 45% better than the EDF relay protocol respectively.
机译:未来5G无线网络要求更高的能量效率和光谱效率。为了提高通过衰落通道的无线网络的能量效率,可以采用RF能量收集技术。本文提出了能量辅助放大和前进(EAF)协作中继方案。为了使电池的能量消耗最小化,在协作无线网络的中继节点中采用了基于电池的能量消耗(PS)的同时无线信息和电力传输(SWIPT)技术。 PS技术将接收信号从接入点(AP)分成两个不同功率的两条流。第一流进入信息接收器模块,下一步流进入继电器中的能量收割机模块。已经开发了分析模型和方程,用于性能参数,例如EAF协议的容量和吞吐量,它们使用MATLAB R2013A与能量辅助解码和前进(EDF)协议进行了比较。观察到,EAF继电器协议的容量和吞吐量分别比EDF中继协议优于EDF中继方案。

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