Phase Modulation Techniques for On-Off Keying Transmission

M. Forzati
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引用次数: 4

Abstract

At bit rates of the order of 40 Gb/s, on-off keying (OOK) transmission becomes severely impaired by non-linear effects, especially Intra-channel Four-Wave Mixing (IFWM). This paper reviews phase modulation techniques for the suppression of IFWM: in the Alternate-Phase Return-to-Zero (APRZ) and Pairwise APRZ (PAPRZ), the phase of the optical signal alternates between neighbouring bits or pairs of bits. APRZ and PAPRZ achieve increased non-linear tolerance by causing different IFWM contributions to interfere destructively, when proper phase-alternation amplitude is applied. In another technique, Asynchronous Phase Modulation (APM), the phase of the optical signal is modulated by an independent clock signal, at a frequency lower than the bit rate. APM achieves increased non-linear tolerance by a combination of destructive interference of IFWM contributions and suppression of the frequency-matching condition for the build-up of IFWM, when phase modulation with proper amplitude and frequency is applied. The effectiveness of the techniques is verified in a number of numerical simulations and experiments.
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开关键控传输的相位调制技术
在比特率为40 Gb/s的情况下,开关键控(OOK)传输受到非线性效应的严重影响,尤其是信道内四波混频(IFWM)。本文综述了抑制IFWM的相位调制技术:在交替相位归零(APRZ)和成对相位归零(PAPRZ)中,光信号的相位在相邻比特或比特对之间交替。在适当的交变幅度下,APRZ和PAPRZ通过使不同的IFWM贡献产生破坏性干扰来提高非线性容限。在另一种技术中,异步相位调制(APM),光信号的相位由一个独立的时钟信号以低于比特率的频率调制。当采用适当幅度和频率的相位调制时,通过结合IFWM贡献的破坏性干扰和抑制IFWM建立的频率匹配条件,APM实现了更高的非线性容忍度。通过一系列数值模拟和实验验证了该技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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