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Impact of Link Parameters and Channel Correlation on the Performance of FSO Systems With the Differential Signaling Technique

机译:差分信号技术对链路参数和信道相关性对FSO系统性能的影响

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摘要

We investigate the effects of link parameters and the channel correlation coefficient on the detection threshold, Q-factor, and bit-error-rate (BER) of a free-space optical system employing a differential signaling scheme. In systems employing differential signaling schemes, the mean value of the signal is used as the detection threshold level, provided that differential links are identical or highly correlated. However, in reality, the underlying links are not essentially identical and have a low level of correlation. To show the significance of the link parameters as well as the correlation coefficient, we derive analytical relations describing the effect of weak turbulence and we determine the improvement of Q-factor with the channel correlation. Further, for the same signal-to-noise ratio, we demonstrate that a link with a higher extinction ratio offers improved performance. We also propose a closed-form expression of the system BER. We present experimental results showing improved Q-factor for the correlated channel case compared to the uncorrelated channel.
机译:我们研究了链路参数和信道相关系数对采用差分信令方案的自由空间光学系统的检测阈值,Q因子和误码率(BER)的影响。在采用差分信令方案的系统中,假设差分链路相同或高度相关,则将信号的平均值用作检测阈值水平。但是,实际上,底层链接实际上并不完全相同,并且相关程度较低。为了显示链接参数的重要性以及相关系数,我们导出了描述弱湍流影响的解析关系,并确定了信道相关性对Q因子的改善。此外,对于相同的信噪比,我们证明了具有更高消光比的链路可以提高性能。我们还提出了系统BER的闭式表达式。我们目前的实验结果表明,与不相关的信道相比,相关信道的情况下改善了Q因子。

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