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Research on routing and wavelength/subcarrier assignment algorithm based on layered-graph model in optical satellite networks

机译:卫星网络中基于分层图模型的路由和波长/子载波分配算法研究

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In optical satellite networks with multi-wavelengths and multi-subcarriers, two-level switching mode replace single wavelength switching, achieving better flexibility and network performance with its disadvantages of more complex routing and network resource allocation. Based on subcarrier layered-graph (SL-G), a novel dynamic routing and wavelength/subcarrier assignment (RWSA) algorithm is proposed to find the shortest path with limited costs in the corresponding layered-graph. By defining different edge cost functions in SL-G, centralized resource allocation strategy and decentralized resource allocation strategy in dynamic RWSA are analysed for optical satellite networks with different types of constellations. Simulation results demonstrate that, no matter whether optical satellite networks has single constellation with uniform wavelength distribution or hybrid constellations with non-uniform wavelength distribution, the proposed RWSA algorithms are superior to traditional routing and wavelength assignment algorithms with lower network blocking probability.
机译:在具有多波长和多子载波的光卫星网络中,两级交换模式代替了单波长交换,具有路由和网络资源分配更为复杂的缺点,从而实现了更好的灵活性和网络性能。基于子载波分层图(SL-G),提出了一种新颖的动态路由和波长/子载波分配(RWSA)算法,以在相应的分层图中找到成本有限的最短路径。通过在SL-G中定义不同的边缘成本函数,针对具有不同类型星座的光卫星网络,分析了动态RWSA中的集中式资源分配策略和分散式资源分配策略。仿真结果表明,无论光卫星网络是具有均匀波长分布的单一星座图,还是具有不均匀波长分布的混合星座图,所提出的RWSA算法均优于具有较低网络阻塞概率的传统路由和波长分配算法。

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