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Ground-to-satellite optical communication link performance with spatial diversity in weak atmospheric turbulence

机译:地面到卫星光通信链路性能与弱大气湍流中的空间分集

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摘要

In this article, performance improvement of a free-space optical communication link with spatial diversity is evaluated for coherent (sub-carrier BPSK and sub-carrier QPSK) and non-coherent (OOK and Q-PPM) modulation schemes in an atmospheric turbulence fading channel. Based on Kolmogorov's theory, the link performance characterized by the signal-to-noise ratio or bit error rate is evaluated for both modulation schemes. It is observed that there is performance improvement with the increase in the order of transmit diversity for all the modulation schemes. Sub-carrier BPSK modulation outperforms the other modulation schemes in terms of the minimum signal-to-noise ratio requirement for a given bit error rate. Also, the effect of correlation among different transmitting antenna beams on the link performance is analyzed.
机译:在本文中,针对大气湍流衰落中的相干(子载波BPSK和子载波QPSK)和非相干(OOK和Q-PPM)调制方案,评估了具有空间分集的自由空间光通信链路的性能改进渠道。基于Kolmogorov的理论,对两种调制方案都评估了以信噪比或误码率为特征的链路性能。可以看出,对于所有调制方案,随着发射分集顺序的增加,性能得到了改善。就给定的误码率而言,子载波BPSK调制在最小信噪比要求方面优于其他调制方案。此外,分析了不同发射天线波束之间的相关性对链路性能的影响。

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