A New Buffered Fabrication Technique for Augmented Data Vortex Switch

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Future is the time of high bandwidth communication. Even today, the present technology is not sufficient to cope up with the tremendous demand of bandwidth. Photonic transfer is one of the technologies, which can satisfy the bandwidth requirement as per the current technologies, where electro-optic switches are used in conjunction with the optical media for switching the data packets. In this regard, a switch architecture already has been proposed named as Augmented Data Vortex (ADV) is available. While designing the switch architecture, attention must be paid towards the time delay in delivering the packets during peak load hours. But in this switch architecture less attention has been paid to the peak loads hours time delay. In this thesis a new switch architecture named BADV (Buffered augmented data vortex) has been proposed. The proposed BADV architecture uses buffer to reduce time delay during peak load hours. The performance of BADV has been compared with ADV on the basis of time delay. The result has been shown the proposed architecture improves the performance in terms of time delay.

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M.E. (Software Engineering)

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