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Free space optical system design using particle swarm optimization

机译:使用粒子群优化自由空间光学系统设计

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Summary The performance of the free‐space optical (FSO) communication system is severely affected by atmospheric properties and misalignment between transmitter‐receiver sections. These effects can be minimized by selecting the precise and proper value of operating parameters. The divergence angle can play a key role in mitigating the negative impact of deviation of an optical beam from its fundamental direction due to different adverse influences. In this paper, we have presented a particle swarm optimization model for determining the optimum divergence angle for designing an optimal FSO link. The FSO transreception quality depends on the medium properties which have a number of detrimental effects like rain, fog, haze, physical obstruction, scattering, and atmospheric turbulence. The proposed work investigate the optimum divergence angle with respect to the maximum deviation angle under different adverse conditions, as mentioned above. Taking into account these effects, the analytical expression of optical link margin and the optimum divergence angle with respect to the maximum deviation angle is derived. The results are analyzed for finding out the most suitable wavelength of the transmitter, transmitted power, link margin, and the link budget under different adverse conditions for reliable communication.
机译:发明内容自由空间光学(FSO)通信系统的性能受到大气性质和发射机接收器部分之间的大气性质和未对准的严重影响。通过选择操作参数的精确和适当值,可以最小化这些效果。发散角可以在减轻由于不同的不利影响因其基本方向而减轻光束偏差的负面影响。在本文中,我们提出了一种用于确定设计最佳FSO链路的最佳发散角的粒子群优化模型。 FSO型崩溃质量取决于雨,雾,雾度,物理障碍,散射和大气湍流等多种不利影响的介质性质。如上所述,所提出的工作研究了不同不利条件下的最大偏差角的最佳分歧角。考虑到这些效果,推导了光学链路余量的分析表达和相对于最大偏差角的最佳发散角。分析结果以发现在不同不利条件下发现发射器,传输功率,链路裕度的最合适波长和链路预算,以获​​得可靠的通信。

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