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Design and analysis of performance of FSO communication system based on partially coherent beams

机译:基于部分相干光束的FSO通信系统性能的设计与分析

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摘要

In this paper, we investigate that the effects of weather, exponentiated Weibull turbulence and generalized pointing errors based on Beckmann distribution on partially coherent beams and establish a joint channel statistical model, then derive new expressions of the performance parameters of free space optical communication system based on On-Off keying (OOK) modulation by using Meijer's-G function and Fox-H function, such as average bit error rate (BER), average channel capacity and outage probability. For an atmospheric laser communication system with 1550 nm wavelength and 1 km terrestrial level link, the performance parameters of the system are simulated and analyzed. The results show that with the increase of signal to noise ratio (SNR), the compensation effect for strong turbulence becomes more obvious; on the premise of sacrificing less channel capacity, reducing the spatial coherence length or increasing the plane spot size of the transmitter can significantly improve the BER and outage probability performance of the system; with the increase of receiver aperture diameter, the aperture average effect is more obvious; increasing the receiver aperture diameter can significantly improve the overall performance of the system; in the design of APT (Acquisition,Pointing and Tracking) subsystem, when a certain boresight error is allowed, the random jitter of transmitter is reduced as much as possible.
机译:在本文中,我们研究的是天气,幂威布尔动荡的广义指向误差根据贝克曼分布在部分相干光,并建立一个联合信道统计模型的影响,并随后获得的基于自由空间光通信系统的性能参数的新表情通过使用Meijer'-G功能和Fox-H功能的开关键控(OOK)调制,例如平均误码率(BER),平均信道容量和中断概率。对于具有1550nm波长和1 km地面连接的大气激光通信系统,模拟并分析了系统的性能参数。结果表明,随着信噪比(SNR)的增加,强烈湍流的补偿效果变得更加明显;在牺牲更少的信道容量的前提下,减少空间相干长度或增加变送器的平面点尺寸可以显着提高系统的预测和中断概率性能;随着接收孔径的增加,孔径平均效果更为明显;增加接收器孔径直径可以显着提高系统的整体性能;在APT(获取,指向和跟踪)子系统的设计中,当允许某个防止误差时,发射器的随机抖动尽可能减少。

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