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Performance evaluation of optically-preamplified hybrid QPSK M-ary PPM systems with finite extinction ratios

机译:具有有限消光比的光学放大混合QPSK M-ary PPM系统的性能评估

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In this paper, we investigate the impact of finite extinction ratios on the error performance of optically-preamplified homodyne hybrid PDM-QPSK M-ary PPM (PQ-mPPM) systems. The study is carried for symbol sizes M is an element of {2, 4,..., 1024} and extinction ratios r is an element of{10, 15, 20, 25, 30} dB for probabilities of bit error down to P-b = 10(-9), which covers systems with or without forward error correction (FEC). We demonstrate that the probability of slot correct location within a symbol in a PQ-mPPM homodyne system with finite extinction ratios is equal to the probability of symbol correct detection in a direct-detection system with dual polarized noise, with the same extinction ratio and symbol size M. This result is leveraged to compute the probabilities of bit error for the homodyne system using an accurate numerical approach. We show that when the extinction ratio is finite, the probability of slot correct location is decreased which not only increases the probability of bit error in the PPM demodulator subsystem but also leads to an increased probability of bit error in the QPSK demodulator. This results in a situation where systems with higher values of M lose their advantage. For example, at Pb = 10(-4), M = 128 and M = 16 require the least signal to noise ratio for the case of r = 30 dB and 20 dB, respectively. The power penalty due to a finite extinction ratio depends on the symbol size M. For instance, at P-b = 10(-9), M = 1024, and r = 20 dB, the penalty is delta = 10.6 dB. It increases drastically to 22.1 dB for r = 10 dB. For M = 16, it is 0.6 dB and 5 dB for r = 20 dB and r = 10 dB, respectively. (C) 2015 Elsevier Inc. All rights reserved.
机译:在本文中,我们研究了有限消光比对光学放大的零差混合PDM-QPSK M-ary PPM(PQ-mPPM)系统的误差性能的影响。对于符号大小M为{2,4 ,, ...,1024}的元素,消光比r为{10,15,20,25,30} dB的元素进行研究,对于误码率低至Pb = 10(-9),涵盖具有或不具有前向纠错(FEC)的系统。我们证明,在具有有限消光比的PQ-mPPM零差系统中,符号内的槽口正确定位的概率等于在具有相同消光比和符号的双极化噪声的直接检测系统中,符号正确检测的概率大小M。利用精确的数值方法,可以利用此结果来计算零差系统的误码概率。我们显示出,当消光比为有限时,时隙正确定位的概率会降低,这不仅会增加PPM解调器子系统中的误码率,还会导致QPSK解调器中的误码率增加。这导致M值较高的系统失去优势的情况。例如,在Pb = 10(-4)时,对于r = 30 dB和20 dB的情况,M = 128和M = 16分别要求最小的信噪比。由于有限的消光比而导致的功率损失取决于符号大小M。例如,在P-b = 10(-9),M = 1024和r = 20 dB时,损失为delta = 10.6 dB。对于r = 10 dB,它急剧增加到22.1 dB。对于M = 16,对于r = 20 dB和r = 10 dB,分别为0.6 dB和5 dB。 (C)2015 Elsevier Inc.保留所有权利。

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