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Efficient design of wavelength division multiplexing based optical networks.

机译:基于波分复用的光网络的高效设计。

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In this research, we investigate several important and fundamental design issues in wavelength division multiplexing (WDM) networks, such as traffic routing, wavelength assignment, wavelength conversion and survivability. Using the solutions and studies presented in this research, different system metrics can be optimized or greatly improved for various scenarios, to achieve an efficient and flexible WDM optical network.; We first investigate the problem of routing and wavelength assignment (RWA) for assigning connections in a survivable WDM optical network. We have developed algorithms based on the static and dynamic strategy for establishing protection paths. The dynamic strategy allows for re-arrangement of protection paths, that is, both the route and wavelength chosen for the protection path of an existing connection can change so as to accommodate new connection requests. One of the results of our study is that contrary to intuition, the static strategy performs better than the dynamic strategy.; In our next research on optical network survivability, we propose a new survivability scheme called sub-path protection. We show that our proposed sub-path protection scheme is more efficient and flexible in providing failure recovery, and has advantages over the traditionally used link and path schemes. Further, the sub-path scheme can provide a good trade-off between capacity utilization and restoration times required for failure recovery. We study the effect of using wavelength conversion on various network parameters under static and dynamic traffic conditions. Our results indicate that the use of wavelength conversion can considerably reduce the blocking of the network under dynamic traffic conditions, but there is minimal difference in the wavelength requirements while building a green-field network using wavelength conversion.; We investigate the RWA problem for assigning connections profitably in optical networks. In this work we model the problem of profit maximization as a modified RWA problem and propose various solutions by which a carrier can maximize the profit for static and dynamic traffic. We also investigate the effect of lightpath re-arrangement on the profitability and extend this work to consider survivable optical networks consisting of multiple traffic classes, wherein each class of traffic may require a different amount of protection.
机译:在这项研究中,我们调查了波分复用(WDM)网络中的几个重要且基本的设计问题,例如流量路由,波长分配,波长转换和生存能力。使用本研究中提出的解决方案和研究,可以针对各种情况优化或大大改善不同的系统指标,以实现高效灵活的WDM光网络。我们首先研究在可生存的WDM光网络中分配连接的路由和波长分配(RWA)问题。我们基于静态和动态策略开发了用于建立保护路径的算法。动态策略允许重新布置保护路径,也就是说,可以更改为现有连接的保护路径选择的路径和波长,以适应新的连接请求。我们研究的结果之一是,与直觉相反,静态策略的性能优于动态策略。在我们对光网络生存能力的下一个研究中,我们提出了一种称为子路径保护的新生存能力方案。我们表明,我们提出的子路径保护方案在提供故障恢复方面更加有效和灵活,并且比传统使用的链路和路径方案具有优势。此外,子路径方案可以在容量利用率和故障恢复所需的恢复时间之间提供良好的权衡。我们研究了在静态和动态流量情况下使用波长转换对各种网络参数的影响。我们的结果表明,使用波长转换可以显着减少动态交通状况下的网络阻塞,但是在使用波长转换构建绿色现场网络时,波长要求之间的差异很小。我们研究了RWA问题,以在光网络中以有利的方式分配连接。在这项工作中,我们将利润最大化问题建模为修正的RWA问题,并提出了各种解决方案,运营商可以通过这些解决方案最大化静态和动态流量的利润。我们还研究了光路重排对获利能力的影响,并将这项工作扩展到考虑由多个流量类别组成的可生存光网络,其中每个流量类别可能需要不同数量的保护。

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