地面无瞄准线空间光通信的波前补偿技术

R. Rajeshwari, T. Pasupathi, J. A. Vijaya Selvi
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引用次数: 1

摘要

自由空间光通信(FSOC)是指使用非制导可见光、红外线或紫外光来传输信号的光通信。在无线光通信系统中,光信号被调制并在自由空间大气信道上传输。当激光束在湍流大气通道中传播时,受各种参数的影响很大。通常,由于自然大气成分(气体、粉尘、烟雾、降水、雾、雨等)的吸收和散射效应,激光束的强度会大大降低。另一方面,FSOC的性能受大气波动的影响很大。这种波动导致了波束漂移、波束闪烁和波前像差等大气湍流效应。因此,大气湍流极大地降低了FSOC的性能。因此,有必要开发一种合适的光电装置和算法来补偿大气湍流。本文论证了通过补偿大气湍流效应来提高FSOC性能的可行性。本文利用必要的光电组件,提出了一种波前像差补偿技术,以减轻由于通道引起的波前像差。本文主要阐述了波前像差计算的实验实现,并对实验得到的校正结果进行了论证。
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Wavefront Compensation Technique for Terrestrial Line of Sight Free Space Optical Communication
Free Space Optical Communication (FSOC) refers to an optical communication where unguided visible, infrared or ultraviolet light is used to carry the signal. In Wireless Optical Communication systems, optical signal is modulated and transmitted over the free space atmospheric channel. When the laser beam is propagating through the turbulent atmospheric channel it is heavily affected by various parameters. Generally, the intensity of the laser beam is greatly degraded by the phenomenon such as absorption and scattering effect due to natural atmospheric components namely gases, dust, smoke, precipitation, fog, rain etc. In other hand, the performance of FSOC is heavily affected by the fluctuation in the atmosphere. This fluctuation results in atmospheric turbulence effect such as beam wandering beam scintillation and wavefront aberration. Therefore, the performance of the FSOC is degraded by the atmospheric turbulence tremendously. Hence it is necessary to develop a suitable optoelectronic arrangements and algorithms to compensate the atmospheric turbulences. This paper shows the viability to improve the performance of FSOC by compensating the atmospheric turbulence effect. In this paper, a wavefront aberration compensation technique to mitigate the wavefront aberrations due to the channel is developed using the necessary opto electronic assembly. This paper mainly elaborates experimental implementation for calculation of wavefront aberration and also demonstrates the correction achieved experimentally.
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