Physical layer network coding with two-way relay free space optical communication link

Zina Abu-Almaalie, Zabih Ghassemlooy, H. Le‐Minh, Nauman Aslam
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引用次数: 8

Abstract

Physical layer network coding (PNC) is a promising technique used to improve the network throughput in a wireless two-way relay (TWR) channel. In this paper, the PNC technique is embraced for a TWR-free space optical (FSO) communication link for the full utilization of network resources. Such a scheme is particularly useful in situations where multiple nodes wish to exchange their information but there is no direct link between them. Compared with a traditional relay-assisted FSO link, the new scheme uses two phases in a round loop for a TWR transmissions link. We present simulation results for the bit error rate (BER) performance of the proposed system considering the effect of both the atmospheric turbulence and the path loss using subcarrier intensity modulation binary phase shift keying (SIM-BPSK). The result shows that for the TWR FSO link based PNC technique under an atmospheric channel with a weak fading strength of 0.3, a BER of 10-4 is achieved at a signal-to-noise ratio (SNR) of ~25dB.
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物理层网络编码采用双向中继自由空间光通信链路
物理层网络编码(PNC)是一种很有前途的技术,用于提高无线双向中继(TWR)信道的网络吞吐量。为了充分利用网络资源,本文将PNC技术应用于无twr空间光(FSO)通信链路。这种方案在多个节点希望交换信息但它们之间没有直接链接的情况下特别有用。与传统的中继辅助FSO链路相比,新方案在TWR传输链路中使用了一个圆环路中的两个相位。在考虑大气湍流和路径损耗影响的情况下,采用副载波强度调制二相移键控(SIM-BPSK)对系统的误码率(BER)性能进行了仿真。结果表明,在弱衰落强度为0.3的大气信道下,基于TWR FSO链路的PNC技术在信噪比为~25dB的条件下,可以获得10-4的误码率。
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