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Free-space optical system performance for laser beam propagation through non-Kolmogorov turbulence

机译:自由空间光学系统在非Kolmogorov湍流中传播激光束的性能

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摘要

It is well know that free-space laser system performance is limited by atmospheric turbulence. Most theoretical treatments have been described for many years by Kolmogorov's power spectral density model because of its simplicity. Unfortunately, several experiments have been reported recently that show that the Kolmogorov theory is sometimes incomplete to describe atmospheric statistics properly, in particular, in portions of the troposphere and stratosphere. We present a non-Kolmogorov power spectrum that uses a generalized exponent instead of constant standard exponent value 11/3, and a generalized amplitude factor instead of constant value 0.033. Using this new spectrum in weak turbulence, we carry out, for a horizontal path, an analysis of long-term beam spread, scintillation index, probability of fade, mean signal-to-noise ratio (SNR), and mean bit error rate (BER) as variation of the spectrum exponent. Our theoretical results show that for alpha values lower than α=11/3, but not for alpha close to α=3, there is a remarkable increase of scintillation and consequently a major penalty on the system performance. However, when alpha assumes a value close to α=3 or for alpha values higher than α=11/3, scintillation decreases, leading to an improvement on the system performance.
机译:众所周知,自由空间激光系统的性能受到大气湍流的限制。由于其简单性,大多数理论处理已由Kolmogorov的功率谱密度模型描述了很多年。不幸的是,最近有几项实验表明,Kolmogorov理论有时不能完全正确地描述大气统计数据,特别是在对流层和平流层中。我们提出了一个非Kolmogorov功率谱,该谱使用广义指数而不是恒定标准指数值11/3,以及广义幅度因子而不是恒定值0.033。在弱湍流中使用这一新频谱,对于水平路径,我们进行了长期光束扩展,闪烁指数,衰落概率,平均信噪比(SNR)和平均误码率( BER)作为频谱指数的变化。我们的理论结果表明,对于低于α= 11/3的alpha值,但对于接近α= 3的alpha值而言,闪烁值会显着增加,从而对系统性能造成重大损失。但是,当alpha假定值接近α= 3或大于α= 11/3的alpha值时,闪烁会减少,从而导致系统性能得到改善。

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