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首页> 外文期刊>Optoelectronics, IET >Selection diversity-aided subcarrier intensity modulation/spatial modulation for free-space optical communication
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Selection diversity-aided subcarrier intensity modulation/spatial modulation for free-space optical communication

机译:用于自由空间光通信的选择分集辅助子载波强度调制/空间调制

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摘要

In this study, the authors investigate the performance of selection diversity-aided subcarrier intensity modulation (SIM)/spatial modulation (SM) for free-space optical communications. Selection diversity is a receiver diversity technique which can enhance reception robustness in atmospheric turbulence-induced fading. Moreover, it is most attractive in terms of the complexity when compared with the other diversity schemes. Through computer simulations, the performance of the proposed selection diversity-aided SIM/SM is compared in terms of bit error rate with that of the conventional SIM in an additive white Gaussian noise and in an outdoor environment with log-normal atmospheric channel. Furthermore, the error performance are mathematically analysed in the atmospheric turbulence channel at the spectral efficiency of 2 bits/s/Hz. Numerical results show that the performance of the proposed SIM/SM with two receivers is better than that of a conventional SIM with four receivers at the spectral efficiency of 4 bits/s/Hz. It means that the SIM/SM can release the complexity with less diversity photodetectors over the atmospheric turbulence channel. Additionally, it is shown that the performance of the proposed SIM/SM outperforms that of a conventional SIM regardless of the irradiance variance value. Therefore, the proposed selection diversity-aided SIM/SM can be a good solution to achieve reliable communication with low complexity under high spectral efficiency, even under the impaired conditions of a turbulence fading channel.
机译:在这项研究中,作者研究了用于自由空间光通信的选择分集辅助子载波强度调制(SIM)/空间调制(SM)的性能。选择分集是一种接收机分集技术,可以增强大气湍流引起的衰落中的接收鲁棒性。而且,与其他分集方案相比,就复杂性而言,它最有吸引力。通过计算机仿真,在加性高斯白噪声和具有对数正态大气通道的室外环境中,将所选择的选择多样性辅助SIM / SM的性能在误码率方面与常规SIM进行了比较。此外,在大气湍流通道中以2位/秒/赫兹的频谱效率对误差性能进行了数学分析。数值结果表明,在4位/ s / Hz的频谱效率下,具有两个接收器的拟议SIM / SM的性能优于具有四个接收器的常规SIM / SM的性能。这意味着SIM / SM可以在大气湍流通道上使用较少多样性的光电探测器来释放复杂性。另外,示出了所提出的SIM / SM的性能优于传统SIM的性能,而与辐照度方差值无关。因此,即使在湍流衰落信道受损的情况下,所提出的选择分集辅助SIM / SM也可以成为在高频谱效率下以低复杂度实现可靠通信的良好解决方案。

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