IJIRST (International Journal for Innovative Research in Science & Technology)ISSN (online) : 2349-6010

 International Journal for Innovative Research in Science & Technology

Hybrid Noc Architecture Node Communication Using I-Slip Algorithm


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International Journal for Innovative Research in Science & Technology
Volume 2 Issue - 12
Year of Publication : 2016
Authors : Tejaswini R. Deotare

BibTeX:

@article{IJIRSTV2I12190,
     title={Hybrid Noc Architecture Node Communication Using I-Slip Algorithm},
     author={Tejaswini R. Deotare},
     journal={International Journal for Innovative Research in Science & Technology},
     volume={2},
     number={12},
     pages={510--512},
     year={},
     url={http://www.ijirst.org/articles/IJIRSTV2I12190.pdf},
     publisher={IJIRST (International Journal for Innovative Research in Science & Technology)},
}



Abstract:

As the fabrication technology has been advanced more and more components are implemented on a single platform which makes the communication between this component very difficult unless the proper attention are not given on the communication factor. The system on chip (SOC) has a network version called as network on chip (NOC). Routing algorithm, switching techniques are the main terms in the network-on-chip. Packets between these component can be transfer using the switching techniques. The routing algorithm These communications can be done either by hybrid mesh architecture or bus mesh architecture. In these paper we are going to implement the system, communication where two hybrid mesh architecture are used which has a different algorithm will help us to reduce the latency for the communication for the data. The main purpose of this paper is to reduce the latency of the data communication Here the heavy IP cores are placed in same subsystem and data transfer is carried out with the help of the routing algorithm. Efficient partition and mapping are proposed for the routing algorithm.


Keywords:

Hybrid NOC Architecture, X-Y Routing Algorithm, IP Cores, Mesh Architecture, i-slip Algorithm, Latency Factor


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