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Digital baseband predistortion for SSII cancellation in EAM-based direct-detection OFDM systems

机译:基于EAM的直接检测OFDM系统中用于SSII消除的数字基带预失真

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摘要

To increase the available bandwidth of electro-absorption modulator (EAM)-based direct-detection orthogonal frequency division multiplexing (DD-OFDM) systems, which suffers from dispersion- and chirp induced power fading, the multiband subcarrier allocation scheme and adaptive modulation formats are adopted. However, the subcarrier-to-subcarrier intermixing interference (SSII) would degrade signal-to-noise ratio on the increased bandwidth and become a bottleneck of the multiband systems. In this paper, a novel digital baseband predistortion is proposed to minimize the penalty of SSII. The experimental results show that a 30 Gbps EAM-based DD-OFDM system with the proposed technique could improve similar to 3 dB receiver sensitivity compared with the system without the technique over 100 km long single mode fiber transmission and only decreases similar to 1.0 dB in comparison with the back-to-back situation. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了增加基于电吸收调制器(EAM)的直接检测正交频分复用(DD-OFDM)系统的可用带宽,该系统会遭受色散和线性调频引起的功率衰落,因此,需要采用多频带子载波分配方案和自适应调制格式通过。然而,子载波与子载波的混合干扰(SSII)会在增加的带宽上降低信噪比,并成为多频带系统的瓶颈。本文提出了一种新颖的数字基带预失真技术,以最小化SSII的代价。实验结果表明,与不使用该技术的系统相比,采用该技术的基于30 Gbps EAM的DD-OFDM系统在100 km长的单模光纤传输上的接收灵敏度可提高约3 dB,而在2008年仅降低了1.0 dB。与背靠背的情况进行比较。 (C)2016 Elsevier B.V.保留所有权利。

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