各种光模拟发射机的光反射容差性能评估及其改进技术

IF 4.1 1区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Lightwave Technology Pub Date : 2024-08-15 DOI:10.1109/JLT.2024.3443998
Kazuki Tanaka;Hirotaka Ochi;Shinji Nimura;Kosuke Nishimura;Ryo Inohara;Takehiro Tsuritani;Masatoshi Suzuki
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引用次数: 0

摘要

模拟光纤射频(RoF)技术已被研究为移动应用(如移动前传和容纳分布式天线)的合适解决方案。另一方面,众所周知,多重反射会严重降低模拟 RoF 系统的传输信号质量。本文针对基于直接调制激光器(DML)、电吸收调制器激光器(EML)和铌酸锂马赫-泽恩德调制器(LN-MZM)的不同类型光发射器,对多重反射的影响及其缓解方案--高频相位抖动和偏振随机化--的有效性进行了实验研究。在多重反射和缓解技术的各种条件下,对多重反射引起的噪声及其缓解效果进行了定量评估。此外,还阐明了多重反射条件下光纤中频(IFoF)信号的传输质量。还介绍了实现 64-QAM OFDM 信号误差矢量幅度(EVM)标准的操作条件。
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Performance Evaluation of Optical Reflection Tolerance and Its Improvement Techniques in Various Optical Analog Transmitters
Analog radio-over-fiber (RoF) technologies have been studied as a suitable solution for mobile applications such as mobile fronthaul and accommodation of distributed antennas. On the other hand, multiple reflections are known to cause significant degradation in the transmission signal quality of analog RoF systems. In this paper, the influence of multiple reflections and the effectiveness of its mitigation scheme, high-frequency phase dithering and polarization randomization, are experimentally studied for different types of optical transmitters based on directly modulated laser (DML), electro-absorption modulator laser (EML), and lithium niobate Mach-Zehnder modulator (LN-MZM). The noise induced by multiple reflections and its mitigation effect are quantitatively evaluated in various conditions for the multiple reflections and the mitigation techniques. Additionally, transmission qualities of intermediate frequency over fiber (IFoF) signals under multiple reflections conditions are clarified. The operational conditions for achieving an error vector magnitude (EVM) criterion of 64-QAM OFDM signal are also presented.
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来源期刊
Journal of Lightwave Technology
Journal of Lightwave Technology 工程技术-工程:电子与电气
CiteScore
9.40
自引率
14.90%
发文量
936
审稿时长
3.9 months
期刊介绍: The Journal of Lightwave Technology is comprised of original contributions, both regular papers and letters, covering work in all aspects of optical guided-wave science, technology, and engineering. Manuscripts are solicited which report original theoretical and/or experimental results which advance the technological base of guided-wave technology. Tutorial and review papers are by invitation only. Topics of interest include the following: fiber and cable technologies, active and passive guided-wave componentry (light sources, detectors, repeaters, switches, fiber sensors, etc.); integrated optics and optoelectronics; and systems, subsystems, new applications and unique field trials. System oriented manuscripts should be concerned with systems which perform a function not previously available, out-perform previously established systems, or represent enhancements in the state of the art in general.
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