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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Performance of single and dual-polarized optically preamplified M-ary PPM systems with finite extinction ratios over FSO fading channels
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Performance of single and dual-polarized optically preamplified M-ary PPM systems with finite extinction ratios over FSO fading channels

机译:在FSO衰落信道上具有有限消光比的单偏振和双偏振光学前置Mary PPM系统的性能

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M-ary pulse position modulation (PPM) systems have been considered in free-space optical (FSO) communications, optical fiber links, and passive optical networks. In this paper, we study the error performance of direct-detection optically preamplified M-ary PPM systems over slowly fading FSO channels. The study considers the combined effects on the probability of bit error, P-b, of channel fading with a given scintillation index, sigma(2)(p), the transmitter finite extinction ratio, r, and the preamplifier spontaneous emission (ASE) noise. We provide results for both single and dual-polarized systems with symbol sizes M is an element of{2, 4,...,1024} at P-b = 10(-4) and P-b = 10(-9). The fading models considered in this study are the exponential, log-normal, and gamma-gamma channels. For single-polarized systems with infinite extinction ratios, we provide closed-form expressions for the bit error probabilities for the three channel models. For the dual-polarized systems we compute them numerically. The results indicate that gamma-gamma fading imposes a more severe penalty than the log-normal case. In this study, the power penalty at P-b = 10(-9) ranges between 1.8 and 14 dB for the log-normal channel, whereas it ranges between 2.2 and 30.7 dB for the gamma-gamma channel. The study also demonstrates that the power penalty due to the combined effects of transmitter finite r and channel fading is the sum of the penalty due to fading alone and the penalty due to a finite r alone, and that the power penalty for dual-polarized systems is about 0.4 dB larger than single-polarized ones. (C) 2016 Elsevier B.V. All rights reserved.
机译:在自由空间光(FSO)通信,光纤链路和无源光网络中已经考虑了M进制脉冲位置调制(PPM)系统。在本文中,我们研究了在缓慢衰落的FSO通道上直接检测光学预放大的Mary PPM系统的误码性能。该研究考虑了在给定闪烁指数sigma(2)(p),发射机有限消光比r和前置放大器自发辐射(ASE)噪声的情况下,对信道衰落的误码概率P-b的综合影响。我们提供符号大小为M的单极化和双极化系统的结果,其中M是{2,4,...,1024}的元素,且P-b = 10(-4)和P-b = 10(-9)。本研究中考虑的衰落模型是指数,对数正态和伽玛-伽玛通道。对于具有无限消光比的单极化系统,我们为三个通道模型的误码率提供了封闭形式的表达式。对于双极化系统,我们将对其进行数值计算。结果表明,伽马-伽马衰落比对数正态情况施加了更严厉的惩罚。在这项研究中,对数正态信道在P-b = 10(-9)时的功率损失在1.8和14 dB之间,而伽马-伽马信道的功率损失在2.2和30.7 dB之间。该研究还表明,由于发射机有限r和信道衰落的综合影响而导致的功率损失是仅由于衰落导致的损失与由于有限r导致的损失之和,以及双极化系统的功率损失比单极化的大约大0.4 dB。 (C)2016 Elsevier B.V.保留所有权利。

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