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中继放置对自适应选择解码转发中继辅助自由空间光通信中分集阶数的影响。

Impact of relay placement on diversity order in adaptive selective DF relay-assisted FSO communications.

作者信息

Boluda-Ruiz Rubén, García-Zambrana Antonio, Castillo-Vázquez Beatriz, Castillo-Vázquez Carmen

出版信息

Opt Express. 2015 Feb 9;23(3):2600-17. doi: 10.1364/OE.23.002600.

Abstract

The impact of relay placement on diversity order in adaptive selective decode-and-forward (DF) cooperative strategies is here investigated in the context of free-space optical (FSO) communications over atmospheric turbulence channels with pointing errors when line of sight is available. The irradiance of the transmitted optical beam here considered is susceptible to moderate-to-strong turbulence conditions, following a gamma-gamma (GG) distribution together with a misalignment fading model where the effect of beam width, detector size and jitter variance is considered. Novel closed-form approximate bit error-rate (BER) expressions are obtained for a cooperative FSO communication setup with N relays, assuming that these relays are located in an area similar to an annulus around source or destination node. An analytical expression is here found that determines the best selection criterion based on the knowledge of the channel state information (CSI) of source-relay or relay-destination links in order to significantly increase the diversity order corresponding to the cooperative strategy under study. It is concluded that the highest diversity order is achieved when the relation β(SR(min)) > β(SD) + β(R(min)D) is satisfied, wherein β(SR(min)), β(R(min)D) and β(SD) are parameters corresponding to the atmospheric turbulence conditions of source-relay and relay-destination link with the greatest scintillation index, and source-destination link, respectively.

摘要

本文研究了在存在指向误差的大气湍流信道上的自由空间光(FSO)通信中,中继放置对自适应选择性解码转发(DF)协作策略中的分集阶数的影响,此时视线是可用的。这里考虑的发射光束的辐照度易受中度到强湍流条件的影响,遵循伽马-伽马(GG)分布以及考虑了光束宽度、探测器尺寸和抖动方差影响的失准衰落模型。对于具有N个中继的协作FSO通信设置,获得了新颖的闭式近似误码率(BER)表达式,假设这些中继位于源节点或目的节点周围类似于环形的区域。这里找到了一个解析表达式,该表达式基于源-中继或中继-目的链路的信道状态信息(CSI)的知识来确定最佳选择标准,以便显著提高所研究的协作策略对应的分集阶数。得出的结论是,当满足关系β(SR(min)) > β(SD) + β(R(min)D)时,可实现最高的分集阶数,其中β(SR(min))、β(R(min)D)和β(SD)分别是对应于具有最大闪烁指数的源-中继和中继-目的链路以及源-目的链路的大气湍流条件的参数。

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