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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Performance of DF Based Dual-Hop Dual-Path Hybrid RF/FSO Cooperative System
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Performance of DF Based Dual-Hop Dual-Path Hybrid RF/FSO Cooperative System

机译:基于DF的双跳双路径混合RF / FSO协作系统的性能

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摘要

In this paper, we investigate the performance of an asymmetric radio frequency/free space optical (RF/FSO) hybrid satellite-terrestrial cooperative system with two relays utilizing a non-linear decoder (NLD) and a low-complexity piecewise linear (PL) decoder. The satellite transmits data over the RF links to the relays on the ground and the relays follow the decode-and-forward (DF) protocol and transmit the decoded data to a distant destination over FSO links assuming the constant transmit power constraint. The RF and FSO channels of the asymmetric system are assumed to follow the Shadowed-Rician and Gamma-Gamma distributions, respectively. The relays are assumed to have hybrid RF/FSO capabilities and utilize subcarrier intensity modulation scheme for transmitting the decoded signal to the destination. A NLD is derived at the destination of considered system for M-ary phase-shift keying and utilizing the derived NLD, we obtain the error rate and its upper bound. Further, in order to reduce the decoding complexity a PL decoder is derived, which is a sub-optimal decoder and works very close to the NLD. Utilizing the derived PL decoder we obtain a closed form expression of bit error rate for the considered system. Lastly, we show the effect of imperfect channel estimation and optimized power distribution of the relays on the performance of the DF based FSO cooperative system with two relays.
机译:在本文中,我们研究了具有两个中继的非对称射频/自由空间光(RF / FSO)混合卫星-地面协作系统的性能,这些中继使用非线性解码器(NLD)和低复杂度分段线性(PL)解码器。卫星在RF链路上将数据传输到地面上的中继站,并且中继站遵循解码转发(DF)协议,并在FSO链路上假设恒定的传输功率约束,将解码后的数据传输到远方的目的地。假定非对称系统的RF和FSO通道分别遵循阴影Rician和Gamma-Gamma分布。假定这些中继具有混合RF / FSO功能,并利用子载波强度调制方案将解码后的信号传输到目的地。在所考虑系统的目标位置导出一个NLD,以进行M元相移键控,并利用导出的NLD获得错误率及其上限。此外,为了降低解码复杂度,派生出PL解码器,它是次优解码器,并且非常接近NLD。利用派生的PL解码器,我们获得了所考虑系统的误码率的封闭形式。最后,我们展示了不完美的信道估计和优化的继电器功率分配对具有两个继电器的基于DF的FSO协作系统性能的影响。

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