Title
Cache Energy Management through Dynamic Reconfiguration Approach in Opto-Electrical NoC
Abstract
Multi/Many-core architectures will be the popular platform for future system design. Recent investigations show that the hybrid optical-electrical interconnection network can be an appropriate alternative to the traditional electrical NoC. Undoubtedly, memory wall is one of the most important challenges of multi/many-core systems which can somehow be alleviated thanks to hierarchical memory structure. Cache subsystem plays an essential role in increasing the efficiency of the memory structure. In this paper, after exploring the effect of cache subsystem's parameters in a many-core platform with opto-electrical interconnect, we propose a mechanism to increase the cache energy efficiency. The simulation results of the proposed approach show that after applying our method, the energy efficiency parameter improves by 17% and 23% in SPLASH2 and PARSEC benchmarks, respectively.
Year
DOI
Venue
2017
10.1109/PDP.2017.65
2017 25th Euromicro International Conference on Parallel, Distributed and Network-based Processing (PDP)
Keywords
Field
DocType
Energy efficiency,cache structure,opto-electrical NoC,manycore
Energy management,Parsec,Cache,Computer science,Efficient energy use,Parallel computing,Cache algorithms,Cache coloring,Smart Cache,Control reconfiguration,Embedded system
Conference
ISSN
ISBN
Citations 
1066-6192
978-1-5090-6059-7
0
PageRank 
References 
Authors
0.34
13
3
Name
Order
Citations
PageRank
Saba Jamilan100.34
Meisam Abdollahi2386.34
Siamak Mohammadi3278.23