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Bit error rate analysis of Gaussian, annular Gaussian, cos Gaussian, and cosh Gaussian beams with the help of random phase screens

机译:高斯光束,环形高斯光束,cos高斯光束和cosh高斯光束的误码率分析,借助随机相位屏蔽

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Using the random phase screen approach, we carry out a simulation analysis of the probability of error performance of Gaussian, annular Gaussian, cos Gaussian, and cosh Gaussian beams. In our scenario, these beams are intensity-modulated by the randomly generated binary symbols of an electrical message signal and then launched from the transmitter plane in equal powers. They propagate through a turbulent atmosphere modeled by a series of random phase screens. Upon arriving at the receiver plane, detection is performed in a circuitry consisting of a pin photodiode and a matched filter. The symbols detected are compared with the transmitted ones, errors are counted, and from there the probability of error is evaluated numerically. Within the range of source and propagation parameters tested, the lowest probability of error is obtained for the annular Gaussian beam. Our investigation reveals that there is hardly any difference between the aperture-averaged scintillations of the beams used, and the distinctive advantage of the annular Gaussian beam lies in the fact that the receiver aperture captures the maximum amount of power when this particular beam is launched from the transmitter plane.
机译:使用随机相位屏蔽方法,我们对高斯光束,环形高斯光束,cos高斯光束和cosh高斯光束的误差性能概率进行了仿真分析。在我们的场景中,这些波束由电消息信号的随机生成的二进制符号进行强度调制,然后以相等的功率从发射机平面发射。它们在由一系列随机相位屏幕建模的湍流中传播。到达接收器平面后,将在由pin光电二极管和匹配滤波器组成的电路中执行检测。将检测到的符号与传输的符号进行比较,对错误进行计数,然后从中对错误的可能性进行数字评估。在测试的源和传播参数范围内,环形高斯光束的最低错误概率。我们的研究表明,使用的光束的平均孔径闪烁几乎没有区别,环形高斯光束的显着优势在于,当从该特定光束发射时,接收器的孔径会捕获最大的功率。发送器平面。

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