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Real-Time Power Control for Dynamic Optical Networks—Algorithms and Experimentation

机译:动态光网络的实时功率控制—算法和实验

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摘要

Core and aggregation optical networks are remarkably static, despite the emerging dynamic capabilities of the individual optical devices. This stems from the inability to address optical impairments in real-time. As a result, tasks such as adding and removing wavelengths take a substantial amount of time, and therefore, optical networks are over-provisioned and inefficient in terms of capacity and energy. Optical Performance Monitors (OPMs) that assess the Quality of Transmission (QoT) in real-time can be used to overcome these inefficiencies. However, prior work mostly focused on the single link level. In this paper, we present a network-wide optimization algorithm that leverages OPM measurements to dynamically control the wavelengths' power levels. Hence, it allows adding and dropping wavelengths quickly while mitigating the impacts of impairments caused by these actions, thereby facilitating efficient operation of higher layer protocols. We evaluate the algorithm's performance using a network-scale optical simulator under real-world scenarios and show that the ability to add and drop wavelengths dynamically can lead to significant power savings. Moreover, we experimentally evaluate the algorithm in an optical testbed and discuss the practical implementation issues. To the best of our knowledge, this paper is the first attempt at providing a global power control algorithm that uses live OPM measurements to enable dynamic optical networking.
机译:尽管各个光学设备出现了动态功能,但核心和聚合光网络还是非常静态的。这是由于无法实时解决光学损伤。结果,诸如增加和去除波长之类的任务花费大量时间,因此,在容量和能量方面,光学网络被过度配置并且效率低下。实时评估传输质量(QoT)的光学性能监视器(OPM)可用于克服这些低效率问题。但是,先前的工作主要集中在单个链接级别。在本文中,我们提出了一种全网络优化算法,该算法利用OPM测量来动态控制波长的功率水平。因此,它允许快速增加和减少波长,同时减轻由这些动作引起的损害的影响,从而促进高层协议的有效操作。我们使用网络规模的光学模拟器在实际情况下评估算法的性能,并表明动态添加和删除波长的功能可以节省大量功率。此外,我们在光学测试平台上对算法进行了实验评估,并讨论了实际的实现问题。据我们所知,本文是首次尝试提供一种使用实时OPM测量来启用动态光网络的全局功率控制算法。

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