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On the Reduction of Background Radiation for Differential Signaling FSO Systems

机译:关于差分信号FSO系统的背景辐射的减少

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In this paper, we propose a weighted differential signaling scheme for a 2 × 1 free-space optical (FSO)communication system to suppress the correlated background radiations, while minimizing the bit error rate (BER)of the system. In contrast to conventional differential signaling which is based on equal gain combining (EGC)of the two wavelengths, here, the two wavelengths are combined at the receiver using non-equal channel-dependent weighting factors. By formulating the BER of the system and the background suppression criterion, the optimal weights are derived by minimizing the BER under background suppression constraints. Since the aforementioned optimization problem is non-convex, we optimize the upper bound of BER and show that the optimal scheme outperforms the conventional EGC scheme. Numerical results confirm the superiority of the proposed scheme in terms of achievable BER upper-bound compared to classical EGC method.
机译:在本文中,我们提出了一种用于2×1自由空间光(FSO)通信系统的加权差分信令方案,以抑制相关的背景辐射,同时最大程度地降低系统的误码率(BER)。与基于两个波长的相等增益合并(EGC)的常规差分信令相反,这里,使用不相等的信道相关加权因子在接收机处合并两个波长。通过制定系统的误码率和背景抑制准则,可以通过在背景抑制约束下将误码率降至最低来得出最佳权重。由于上述优化问题是非凸的,因此我们优化了BER的上限,并表明该优化方案优于常规EGC方案。数值结果证实了与传统的EGC方法相比,该方法在可实现的BER上限方面具有优势。

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