Theoretical analysis and experimental demonstration of gain switching for a PPM based UWOC system with picosecond pulses

光学 增益开关 切换时间 光开关 皮秒 材料科学 脉冲位置调制 脉冲宽度调制 激光器 光通信 光突发交换 Q开关 功率(物理) 脉搏(音乐) 半导体激光器理论 光电子学 物理 探测器 脉冲幅度调制 光学性能监测 波分复用 量子力学 波长
作者
Chao Zhang,Yufan Zhang,Zhijian Tong,Haiwu Zou,Hao Zhang,Zejun Zhang,Gong‐Ru Lin,Jing Xu
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:30 (21): 38663-38663 被引量:5
标识
DOI:10.1364/oe.470063
摘要

Shortening pulse width can improve the power efficiency and data rate of a pulse position modulation (PPM) based underwater wireless optical communication (UWOC) system at a fixed average optical power, which is more suitable for the energy-limited underwater environment. As a common method to generate short pulses, gain switching has the advantages of a tunable switching frequency and simple structure, facilitating the generation of high-order PPM signals. However, the output characteristics of electrical gain switching seriously affect the demodulation of PPM signals and limit the data rate. To study the performance of gain switching on a PPM communication system, simulation models of the semiconductor laser diode and the driving circuit are built to describe the generation of electrical and optical pulses. The pulse width, pulse peak value, and peak position of optical pulses are analyzed under different symbol durations and PPM orders. Furthermore, a 64-PPM/150-Mbps UWOC system with a 200-ps optical pulse width is demonstrated by using a gain-switched blue GaN-based laser diode in a water tank. The peak average power ratio (PAPR) is 19.5 dB. Via the statistical analysis of experiment results and the output characteristics of electrical gain switching, the main factor limiting the data rate attributes to the time delay fluctuation of gain switching. To the best of our knowledge, this is the first time that gain switching has been experimentally demonstrated and analyzed in a high-order PPM based UWOC system.

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