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Spatial diversity techniques for non-line-of-sight ultraviolet communication systems over atmospheric turbulence channels

机译:在大气湍流通道上的非视灯紫外通信系统的空间分集技术

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摘要

Rich scattering of ultraviolet signals enables the non-line-of-sight outdoor wireless connectivity and eliminates the line-of-sight requirement of free-space optical links. Besides scattering losses, ultraviolet signals also suffer from the atmospheric turbulence-induced fading. One of the strong fading mitigation techniques is the spatial diversity, which has been extensively studied in the context of wireless radio frequency and infrared networks. In this study, spatial diversity techniques for non-line-of-sight ultraviolet communication links are considered. In particular, multiple-input-single-output (MISO), single-input-multiple-output (SIMO), and multiple-input-multiple-output (MIMO) non-line-of-sight ultraviolet communication systems are derived. The BER performance of the single-input-single-output (SISO) link is also derived as a benchmark. The accuracy of the derivations is confirmed through Monte Carlo simulations. The results demonstrate the significant performance improvements in spatial diversity schemes over SISO counterparts. The authors further investigate the effect of spatial correlation on the performance of non-line-of-sight ultraviolet links with spatial diversity. They demonstrate that the spatial correlation degrades the performance significantly, and efficient separation between apertures is crucial to achieve the maximum diversity gain.
机译:丰富的紫外线信号散射使非线性户外无线连接,并消除了自由空间光学环节的视线要求。除了散射损失外,紫外线信号还患有大气湍流诱导的衰落。强大的衰落减缓技术之一是空间分集,其在无线射频和红外网络的背景下已经广泛研究。在该研究中,考虑了用于非视线紫外线通信链路的空间分集技术。特别地,衍生多输入单输出(MISO),单输入多输出(SIMO)和多输入多输出(MIMO)非线性紫外通信系统。单输入单输出(SISO)链路的BER性能也被派生为基准。通过Monte Carlo模拟确认了衍生的准确性。结果表明,SISO对应物的空间分集方案的显着性能改进。作者进一步研究了空间相关性对具有空间多样性的非视灯紫外线连杆性能的影响。他们表明空间相关性显着降低了性能,并且孔之间的有效分离对于实现最大分集增益至关重要。

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