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Average capacity for optical wireless communication systems over exponentiated Weibull distribution non-Kolmogorov turbulent channels

机译:指数Weibull分布非Kolmogorov湍流信道上的光学无线通信系统的平均容量

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摘要

We model the average channel capacity of optical wireless communication systems for cases of weak to strong turbulence channels, using the exponentiation Weibull distribution model. The joint effects of the beam wander and spread, pointing errors, atmospheric attenuation, and the spectral index of non-Kolmogorov turbulence on system performance are included. Our results show that the average capacity decreases steeply as the propagation length L changes from 0 to 200 m and decreases slowly down or tends to a stable value as the propagation length L is greater than 200 m. In the weak turbulence region, by increasing the detection aperture, we can improve the average channel capacity and the atmospheric visibility as an important issue affecting the average channel capacity. In the strong turbulence region, the increase of the radius of the detection aperture cannot reduce the effects of the atmospheric turbulence on the average channel capacity, and the effect of atmospheric visibility on the channel information capacity can be ignored. The effect of the spectral power exponent on the average channel capacity in the strong turbulence region is higher than weak turbulence region. Irrespective of the details determining the turbulent channel, we can say that pointing errors have a significant effect on the average channel capacity of optical wireless communication systems in turbulence channels.
机译:我们使用指数威布尔分布模型对从弱湍流到强湍流信道的情况,对光无线通信系统的平均信道容量进行建模。包括光束漂移和扩展,指向误差,大气衰减以及非Kolmogorov湍流的光谱指数对系统性能的联合影响。我们的结果表明,当传输长度L从0变为200 m时,平均容量急剧下降,而当传输长度L大于200 m时,平均容量逐渐下降或趋于稳定。在弱湍流区域,通过增加检测孔径,可以提高平均通道通行能力和大气可见度,这是影响平均通道通行能力的重要问题。在强湍流区域,检测孔半径的增加不能减小大气湍流对平均信道容量的影响,可以忽略大气可见度对信道信息容量的影响。在强湍流区域中,频谱功率指数对平均信道容量的影响高于弱湍流区域。不管确定湍流信道的细节如何,我们都可以说指向误差对湍流信道中光无线通信系统的平均信道容量有重大影响。

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