Optimal Power Splitting of Full Duplex Wireless Powered Communication Networks with Two-Way Relay

Xin Song, Y. Ni, Xiuwei Han, Siyang Xu
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引用次数: 2

Abstract

In this paper, we consider a two-way full-duplex wireless power communication network. Two source nodes and the relay node operate in full-duplex mode, considering the self-interference at three nodes in this paper. On the basis of it, we analyzed how to distribute power to maximize system throughput of the two-way full-duplex wireless power communication network. The two source nodes with energy limitation are powered by the relay node, and then transmit information of full-duplex mode. The process is divided into two time slots, the first time slot, two source nodes with two directional antennas utilize the relay node to energy harvesting. In the second time slot, the two source nodes use the harvested energy to transmit their own information to the relay node and relay node amplify and forward this one. To maximize throughput, we investigated how to perform optimal power allocation in terms of the full-duplex relays with two-way perform.
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带双向中继的全双工无线供电通信网络的最优功率分配
本文研究了一种双向全双工无线电力通信网络。考虑到三个节点的自干扰,本文的两个源节点和中继节点工作在全双工模式下。在此基础上,分析了双向全双工无线电力通信网如何分配功率,使系统吞吐量最大化。两个能量受限的源节点由中继节点供电,然后以全双工方式传输信息。该过程分为两个时隙,第一个时隙中,两个源节点具有两个定向天线,利用中继节点进行能量收集。在第二个时隙中,两个源节点利用收集到的能量将自己的信息传递给中继节点,中继节点对其进行放大转发。为了最大限度地提高吞吐量,我们研究了如何在具有双向性能的全双工中继中进行最佳功率分配。
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