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Bit-error-rate performance of optical wireless system using higher order mode laser in anisotropic non-Kolmogorov turbulence

机译:各向异性非Kolmogorov湍流中使用高阶模激光的光学无线系统的误码率性能

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摘要

The average bit-error-rate, (BER), of optical wireless system using higher order mode laser beam is investigated when atmospheric turbulence shows anisotropic and non-Kolmogorov characteristics. Results reveal that increase in anisotropy in both x- and y-directions positively affects the optical wireless systems performance. Increase in the beam order results in an increase in (BER) for any anisotropy level, and thus, higher order beams adversely affect the optical wireless systems performance. Larger structure constant, beam source size, and propagation distance result in larger (BER), but larger wavelength, inner scale length, and signal-to-noise ratio tend to reduce (BER). Increase in the power-law exponent of non-Kolmogorov turbulent spectrum first increases the (BER) until a certain value, and then (BER) starts to decrease when the power-law exponent is further increased. Adverse effect of higher order laser beam holds to be valid for any power-law exponent of non-Kolmogorov turbulence.
机译:当大气湍流表现出各向异性和非Kolmogorov特性时,研究了使用高阶模式激光束的光学无线系统的平均误码率(BER)。结果表明,x和y方向上各向异性的增加会积极影响光学无线系统的性能。光束阶数的增加导致任何各向异性水平的(BER)增大,因此,更高阶的光束会对光无线系统的性能产生不利影响。较大的结构常数,光束源尺寸和传播距离会导致较大的(BER),但较大的波长,内部标尺长度和信噪比往往会减小(BER)。非Kolmogorov湍流谱的幂律指数的增加首先将(BER)增加到一定值,然后,当幂律指数进一步增加时,(BER)开始减小。对于非Kolmogorov湍流的任何幂律指数,高阶激光束的不良影响均成立。

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