A scalable and high capacity router on multi-dimension crossbar switch principle
T. Nalin, I. Takashi, Hiroaki Morino, Hitoshi Aida, T. Saito
Abstract
T. Nalin, I. Takashi, Hiroaki Morino, Hitoshi Aida, T. Saito
Abstract
Eventhough conventional multistage switch architecture such as a Banyan switch can support a high speed capacity, but it still has a high latency and is not scalable. Moreover under non-uniform traffic, blocking occurs. Therefore, a new switch architecture based on multi-dimensional crossbar (MDXB) switch is introduced, as a better solution. The MDXB switch is an interconnection among crossbar switches into multi-dimension network. We also propose a new node configuration and routing algorithm used in the MDXB switch to achieve even lower packet loss rate. The simulation results shown that MDXB switch achieves much higher throughput under a non-uniform traffic pattern.
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Eventhough conventional multistage switch architecture such as a Banyan switch can support a high speed capacity, but it still has a high latency and is not scalable. Moreover under non-uniform traffic, blocking occurs. Therefore, a new switch architecture based on multi-dimensional crossbar (MDXB) switch is introduced, as a better solution. The MDXB switch is an interconnection among crossbar switches into multi-dimension network. We also propose a new node configuration and routing algorithm used in the MDXB switch to achieve even lower packet loss rate. The simulation results shown that MDXB switch achieves much higher throughput under a non-uniform traffic pattern.
Key concepts: Crossbar switch, Crossover switch, Computer science, Scalability, Router, Banyan, Computer network, Interconnection