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Performance of Coherent BPSK Systems Using Phase Compensation and Diversity Techniques

机译:使用相位补偿和分集技术的相干BPSK系统的性能

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The performance of free-space optical (FSO) communication suffers from atmospheric turbulence, which mainly results in scintillation and phase fluctuations to optical signal. In this paper, we study the bit error rate (BER) performance of coherent FSO system employing phase compensation and spatial diversity. Based on weak fluctuation theory, the amplitude fading and phase fluctuation induced by atmospheric turbulence are assumed to follow log-normal model and Gaussian distribution, respectively. Distinct from previous works, a new closed-form expression for signal fading at the receiver is derived. Then the impact of various compensating parameters is examined on the BER performance of the system, including the normalized receiver aperture diameter and the number of phase compensation modes. The optimal compensation parameters are found showing that the FSO coherent system can obtain the minimum BER. Furthermore, we explore the potential of spatial diversity, particularly receiver diversity to further enhance the system performance. Numerical results show that the addition of phase compensation and diversity techniques can largely reduce the impact of atmospheric turbulence.
机译:自由空间光(FSO)通信的性能受到大气湍流的影响,这主要导致光信号发生闪烁和相位波动。在本文中,我们研究了利用相位补偿和空间分集的相干FSO系统的误码率(BER)性能。基于弱涨落理论,假定大气湍流引起的振幅衰减和相位涨落分别服从对数正态模型和高斯分布。与以前的工作不同,得出了一个新的闭合形式的表达式,用于在接收机处进行信号衰落。然后检查各种补偿参数对系统BER性能的影响,包括归一化接收器孔径直径和相位补偿模式的数量。找到最佳补偿参数,表明FSO相干系统可以获得最小的BER。此外,我们探索了空间分集,尤其是接收机分集的潜力,以进一步增强系统性能。数值结果表明,相位补偿和分集技术的加入可以大大减少大气湍流的影响。

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