Influence of random fluctuations of laser beam propagation direction on FSO power design

B. Bonev
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引用次数: 4

Abstract

An algorithm for power design of ground-to-ground Free-Space Laser Communication Systems (Free-Space Optics (FSO)) is suggested. The random fluctuations of laser beam propagation direction, caused by mechanical vibrations of transmitter's antenna and atmospheric turbulence, and also atmospheric extinction are taken into consideration. The algorithm allows calculation of laser source power and receiver's antenna radius and transparency when the Bit-Error-Rate (BER) and the parameters that describe communication channel status are given. The analysis shows the FSO power design problem has no solution for desired BER when the mechanical vibrations and/or the atmospheric turbulence are strong enough. Influence of the initial radius of laser beam and random fluctuations of laser beam propagation direction on possible solutions of FSO power design problem are also studied. Suggested algorithm is used to analyze atmospheric turbulence and mechanical vibrations effect on the FSO power design for different communication channel lengths.
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激光束传播方向随机波动对FSO功率设计的影响
提出了一种地对地自由空间激光通信系统(FSO)的功率设计算法。考虑了发射机天线的机械振动和大气湍流引起的激光束传播方向的随机波动以及大气消光。该算法在给定误码率和描述通信信道状态的参数时,可以计算激光源功率、接收机天线半径和透明度。分析表明,当机械振动和/或大气湍流足够强时,FSO功率设计问题无法满足期望的误码率。研究了激光束的初始半径和光束传播方向的随机波动对FSO功率设计问题可能解的影响。利用该算法分析了不同通信信道长度下大气湍流和机械振动对FSO功率设计的影响。
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