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Upgrading unicast nodes to multicast-capable nodes in all-optical networks

机译:在全光网络中将单播节点升级为支持多播的节点

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We consider the problem of upgrading unicast all-optical networks to support multicast communication. In upgrading, it is necessary to modify the existing nodes to support optical multicast switching. It is desirable to: (i) retain and use the existing node components while adding the necessary components so that the upgrading cost is small, and (ii) avoid major modification of the existing node architecture so that the upgrading overhead is small. We propose three designs to realize these two goals: (i) the pre-splitting design adds splitting modules before the existing optical switches where a splitting module can split incoming light beams into multiple ones, (ii) the post-splitting design adds splitting modules after the existing optical switches, and (iii) the pre/post-splitting design adds splitting modules before and after the existing optical switches. The pre-splitting design and post-splitting designs are simpler and involve lower upgrading overhead, while the pre/post-splitting design gives smaller blocking probability and achieves better cost-effectiveness by suitably selecting the number of splitting modules of each type.
机译:我们考虑升级单播全光网络以支持多播通信的问题。在升级时,有必要修改现有节点以支持光多播交换。期望:(i)在添加必要的组件的同时保留并使用现有的节点组件,以使升级成本较小;以及(ii)避免对现有节点体系结构进行重大修改,从而使升级开销较小。我们提出三种设计来实现这两个目标:(i)预分光设计在现有的光开关之前添加分光模块,其中分光模块可以将入射光束分成多个光束;(ii)后分光设计添加分光模块(iii)前置/后分离设计在现有光开关之前和之后添加了分离模块。预分流设计和后分流设计更简单,并且升级费用较低,而前/后分流设计可通过适当选择每种类型的分流模块数量,实现较小的阻塞概率并实现更高的成本效益。

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