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pro vyhledávání: '"Mihai Pricopi"'
Autor:
Anuj Pathania, Thannirmalai Somu Muthukaruppan, Vanchinathan Venkataramani, Mihai Pricopi, Sanjay Vishin, Tulika Mitra
Publikováno v:
The Dark Side of Silicon ISBN: 9783319315942
The dark silicon era is driving the emergence of asymmetric computing platforms consisting of cores with diverse power-performance characteristics enabling better match between a task’s requirements and the compute engine leading to substantially i
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f65a80791879b791803d4578b7b5619f
https://doi.org/10.1007/978-3-319-31596-6_6
https://doi.org/10.1007/978-3-319-31596-6_6
Autor:
Tulika Mitra, Mihai Pricopi
Publikováno v:
IEEE Transactions on Computers. 63:2590-2603
Multi-cores have become ubiquitous both in the general-purpose computing and the embedded domain. The current technology trends show that the number of on-chip cores is rapidly increasing, while their complexity is decreasing due to power and thermal
Autor:
Tulika Mitra, Mihai Pricopi
Publikováno v:
ACM Transactions on Architecture and Code Optimization. 8:1-21
Computing systems have made an irreversible transition towards parallel architectures with the emergence of multi-cores. Moreover, power and thermal limits in embedded systems mandate the deployment of many simpler cores rather than a few complex cor
Publikováno v:
VLSI-SoC
Embedded systems increasingly need to support dynamic and diverse application landscape. In response, performance asymmetric multi-cores, comprising of identical instruction-set architecture but micro-architecturally distinct set of simple and comple
Autor:
Mihai Pricopi, Thannirmalai Somu Muthukaruppan, Vanchinathan Venkataramani, Tulika Mitra, Sanjay Vishin
Publikováno v:
2013 International Conference on Compilers, Architecture and Synthesis for Embedded Systems (CASES).
Autor:
Sanjay Vishin, Thannirmalai Somu Muthukaruppan, Vanchinathan Venkataramani, Mihai Pricopi, Tulika Mitra
Publikováno v:
DAC
Asymmetric multi-core architectures integrating cores with diverse power-performance characteristics is emerging as a promising alternative in the dark silicon era where only a fraction of the cores on chip can be powered on due to thermal limits. We