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Power Penalties for Multi-Level PAM Modulation Formats at Arbitrary Bit Error Rates

机译:任意误码率的多级PAM调制格式的功率损失

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There is considerable interest in combining multi-level pulsed amplitude modulation formats (PAM-L) and forward error correction (FEC) in next-generation, short-range optical communications links for increased capacity. In this paper we derive new formulas for the optical power penalties due to modulation format complexity relative to PAM-2 and due to inter-symbol interference (ISI). We show that these penalties depend on the required system bit-error rate (BER) and that the conventional formulas overestimate link penalties. Our corrections to the standard formulas are very small at conventional BER levels (typically 1×10~(-12)) but become significant at the higher BER levels enabled by FEC technology, especially for signal distortions due to ISI. The standard formula for format complexity, P = 101og(L-1), is shown to overestimate the actual penalty for PAM-4 and PAM-8 by approximately 0.1 and 0.25 dB respectively at 1×10~(-3) BER. Then we extend the well-known PAM-2 ISI penalty estimation formula from the IEEE 802.3 standard 10G link modeling spreadsheet to the large BER case and generalize it for arbitrary PAM-L formats. To demonstrate and verify the BER dependence of the ISI penalty, a set of PAM-2 experiments and Monte-Carlo modeling simulations are reported. The experimental results and simulations confirm that the conventional formulas can significantly overestimate ISI penalties at relatively high BER levels. In the experiments, overestimates up to 2 dB are observed at 1×10~(-3) BER.
机译:在下一代短距离光通信链路中,结合使用多级脉冲幅度调制格式(PAM-L)和前向纠错(FEC)以提高容量,引起了极大的兴趣。在本文中,由于调制格式相对于PAM-2的复杂性以及符号间干扰(ISI),我们得出了光功率损失的新公式。我们表明,这些惩罚取决于所需的系统误码率(BER),并且传统公式高估了链接惩罚。我们对标准公式的校正在常规BER级别(通常为1×10〜(-12))下很小,但是在FEC技术支持的更高BER级别下变得尤为重要,特别是对于ISI引起的信号失真。格式复杂度的标准公式P = 101og(L-1),表明在1×10〜(-3)BER下,PAM-4和PAM-8的实际代价分别高估了约0.1 dB和0.25 dB。然后,我们将来自IEEE 802.3标准10G链路建模电子表格的著名PAM-2 ISI代价估算公式扩展到大BER情况,并将其推广用于任意PAM-L格式。为了证明和验证ISI损失的BER依赖性,报告了一组PAM-2实验和蒙特卡洛建模仿真。实验结果和模拟结果证实,常规公式可以在BER相对较高的情况下大大高估ISI惩罚。在实验中,在1×10〜(-3)BER下观察到高达2 dB的高估。

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