New priority-based parameter optimization technique for free space optics under bad weather conditions

H. Fadhil, H. Al-Khafaji, H. J. Abd, S. Aljunid
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引用次数: 5

Abstract

Free space optic (FSO) is considered as an attractive option to fiber optic. FSO has the capability to go beyond the limits of fiber optics. However, atmospheric turbulence causes fluctuations in the intensity of the received light signal, impairing link performance. In this paper, we describe a new technique to mitigate turbulence-induced intensity fluctuations, i.e., signal fading (under the effects of rain and haze). The new technique determines the priority in the optimization of transmission parameters to achieve highdata rate transmission with low link attenuation and bit-error rate. The results show that rain has a more detrimental effect than haze on the link attenuation. To compensate for increasing degradation of weather conditions, it is found that the transmission parameters should be optimized in descending order of priority from the optical amplifier gain to the laser power, data rate, aperture size and link range.
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恶劣天气条件下基于优先级的自由空间光学参数优化新技术
自由空间光纤(FSO)被认为是光纤的一种有吸引力的选择。FSO具有超越光纤限制的能力。然而,大气湍流会引起接收光信号强度的波动,从而影响链路的性能。在本文中,我们描述了一种新的技术来减轻湍流引起的强度波动,即信号衰落(在雨和雾霾的影响下)。新技术确定了传输参数优化的优先级,以实现低链路衰减和低误码率的高数据速率传输。结果表明,降雨对链路衰减的影响大于雾霾。为了补偿日益恶化的天气条件,发现传输参数应从光放大器增益到激光功率、数据速率、孔径大小和链路距离的优先级递减进行优化。
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