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Physical implementation of underwater optical wireless system using spatial mode laser sources with optimization of spatial matching components

机译:使用空间模式激光源并优化空间匹配组件的水下光学无线系统的物理实现

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摘要

This article numerically investigates the effect of absorption and scattering loss in the presence of underwater. Presenting optical wireless channel, system is considered for fundamental mode (LP01) and its higher order modes (LP11, LP21& LP31). The system performance is examined in terms of bit error rate (BER) with the function of wavelength, distance, attenuation and beam divergence. This implementation also shows the optimized results with respect to spatial mode matching component using spatial aperture and collimating lens as well. The graded results producing the new sight and will have greater attention among the optical wireless technology. The overall analysis of system design promises for better performance even at the treaty of high attenuation loss 49.34dB/mon the propagation of all spatial modes. Each results obtained in this paper reaches the stability at the greater attenuation with the wavelength range from 1000?nm to 1600?nm.
机译:本文数值研究了水下存在时吸收和散射损失的影响。在介绍光学无线信道时,系统被视为基本模式(LP01)及其更高阶模式(LP11,LP21和LP31)。根据误码率(BER)以及波长,距离,衰减和光束发散的函数来检查系统性能。该实施方式还示出了关于使用空间孔径和准直透镜的空间模式匹配分量的优化结果。分级结果产生了新的视野,并将在光学无线技术中引起更大的关注。系统设计的整体分析即使在所有空间模式传播达到49.34dB / mon的高衰减损耗的条约下也有望获得更好的性能。本文获得的每个结果在波长范围为1000?nm至1600?nm的较大衰减下都达到了稳定性。

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