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Fast and Efficient Sequence Detection for APD Photon-Counting FSO Systems

机译:APD光子计数FSO系统的快速高效序列检测

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摘要

Designing robust detection algorithms under weak and strong atmospheric turbulence conditions is one of the main challenges in practical implementation of free-space optical (FSO) communication receivers. In this paper, we propose a blind and fast algorithm based on the generalized maximum likelihood sequence detection (GMLSD) for APD photon-counting receivers without requiring the transmission of training sequence. More precisely, our proposed method achieves a higher spectral and energy efficiency compared to the conventional methods. In addition, the proposed algorithm makes the GMLSD receiver more attractive due to a lower computational complexity. We show through different Monte-Carlo simulation results that by increasing the length of the transmitted sequence, the bit error rate (BER) performance of our proposed Fast GMLSD receiver approaches to that achieved under perfect channel state information (CSI). Finally, we address the effect of the average number of noise photoelectrons and the turbulence strength on the BER performance of the considered FSO system.
机译:在弱和强大气湍流条件下设计鲁棒的检测算法是自由空间光学(FSO)通信接收器实际实施中的主要挑战之一。在本文中,我们针对APD光子计数接收器提出了一种基于广义最大似然序列检测(GMLSD)的盲快速算法,而无需传输训练序列。更准确地说,与传统方法相比,我们提出的方法可实现更高的光谱和能量效率。另外,由于较低的计算复杂度,所提出的算法使GMLSD接收机更具吸引力。我们通过不同的蒙特卡洛仿真结果表明,通过增加传输序列的长度,我们提出的Fast GMLSD接收器方法的误码率(BER)性能可达到在完美信道状态信息(CSI)下实现的性能。最后,我们讨论了噪声光电子的平均数量和湍流强度对所考虑的FSO系统的BER性能的影响。

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