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Design of Hybrid Optical Network Architectures Incorporating Line Systems

机译:合并线系混合光网络架构的设计

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Multi-ring architectures are widely used as the design approach for survivable optical core networks, particularly when the rings that can be constructed are not constrained by geographical distances between nodes in the network. This is because traffic flows can be rapidly restored using ring protection mechanisms, and costs can be minimised using Add-Drop Multiplexers (ADMs) at the nodes for inserting and extracting optical signals from a ring. There are, however, situations where a network architecture based solely on rings is not cost-effective or even possible. Multi-ring architectures are not possible where geographical distances are too large for rings to be formed, so the design of such a network must resort to using point-to-point line systems. Also, these architectures may not be cost-effective in the situation where routing traffic demands using shortest paths in the net-work results in asymmetric link loads within the network. In this paper we investigate the introduction of line systems into a network architecture to absorb traffic load in particularly heavily-loaded corridors within the network. By using ADMs at intermediate nodes along the line system, we are able to extend the concept of point-to-point line systems to multi-hop line systems, in which optical signals can be added or dropped at these intermediate nodes. We present a tool for designing hybrid architectures, and demonstrate the reduction in cost that can be achieved by the use of hybrid network architectures.
机译:多环架构广泛用作可生存的光学核心网络的设计方法,特别是当可以构造的环不受网络中节点之间的地理距离而受到约束。这是因为可以使用环形保护机制快速恢复流量流,并且可以在节点处使用用于从环插入和提取光信号的节点处的插入多路复用器(ADM)来最小化成本。然而,存在仅基于环的网络架构的情况下不具有成本效益甚至可能。不可能在地理距离太大的情况下进行多环架构,因此该网络的设计必须诉诸使用点对点线系统。此外,这些架构在使用网络中使用最短路径的流量需求的情况下可能不具有成本效益,从而导致网络内的不对称链路加载。在本文中,我们调查了线系的引入到网络架构中,以吸收网络中特别严重负载的走廊中的交通负荷。通过沿着线系的中间节点在中间节点中使用ADM,我们能够将点对点线系统的概念扩展到多跳线系统,其中可以在这些中间节点处添加或丢弃光信号。我们提出了一种设计混合架构的工具,并展示了通过使用混合网络架构来实现的成本的降低。

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