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On Optimal Survivability Design under a Scheduled Traffic Model in Wavelength-Routed Optical Mesh Networks

机译:波长路由光网状网络中调度流量模型下的最优生存性设计

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We study the optimal survivability design problem under a scheduled traffic model in wavelength convertible WDM optical mesh networks. In this model, a set of demands is given, and the setup time and teardown time of a demand are known in advance. We formulate the joint routing and wavelength assignment problems as integer linear programs that maximally exploit network resource reuse in both space and time. Moreover, we propose efficient heuristic algorithms to solve large survivable routing and wavelength assignment problems under the scheduled traffic model. Our simulation results indicate that the optimization of resource sharing in space and time enabled by our connection-holding-time-aware protection schemes can achieve significantly better resource utilization than schemes that are holding time unaware. In addition, the proposed heuristic algorithms are shown to be indeed very effective.
机译:我们研究了波长可转换WDM光网状网络中调度流量模型下的最佳生存性设计问题。在该模型中,给出了一组需求,并且预先知道了需求的建立时间和拆卸时间。我们将联合路由和波长分配问题表述为整数线性程序,该程序可以在时空上最大程度地利用网络资源的重用性。此外,我们提出了有效的启发式算法来解决调度流量模型下的大型可生存路由和波长分配问题。我们的仿真结果表明,与我们的不知道时间的方案相比,我们的“知道保持时间的连接”方案在空间和时间上实现了资源共享的优化,可以显着提高资源利用率。此外,所提出的启发式算法确实非常有效。

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