The designs of a scalable optical packet switching architecture
Wang‐Rong Chang, Ho‐Ting Wu, Kai‐Wei Ke, Hui‐Tang Lin
Abstract
Wang‐Rong Chang, Ho‐Ting Wu, Kai‐Wei Ke, Hui‐Tang Lin
Abstract
This paper proposes a new switching architecture to be used in all optical packet switching networks. The proposed switch is derived from an original 2 × ?2 two‐stage multi‐buffer switched delay line based optical switching node, known as an M‐Quadro node. By incorporating bypass lines into the M‐Quadro architecture and employing a novel switch control strategy, the optical packet switching node can effectively resolve packet contentions, thus reducing the packet deflection probability substantially. Furthermore, we show that such architecture is scalable for a generic multiple stages optical packet switch with a larger number of input/output ports.
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This paper proposes a new switching architecture to be used in all optical packet switching networks. The proposed switch is derived from an original 2 × ?2 two‐stage multi‐buffer switched delay line based optical switching node, known as an M‐Quadro node. By incorporating bypass lines into the M‐Quadro architecture and employing a novel switch control strategy, the optical packet switching node can effectively resolve packet contentions, thus reducing the packet deflection probability substantially. Furthermore, we show that such architecture is scalable for a generic multiple stages optical packet switch with a larger number of input/output ports.
Key concepts: Burst switching, Optical burst switching, Transmission delay, Optical switch, Packet switching, Fast packet switching, Computer network, Cut-through switching