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Sunday, 12 April 2015 15:24

SSDExplorer: a Virtual Platform for Performance/Reliability-oriented Fine-Grained Design Space Exploration of Solid State Drives

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Zuolo, L.; Zambelli, C.; Micheloni, R.; Indaco, M.; Di Carlo, S.; Prinetto, P.; Bertozzi, D.; Olivo, P., Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on , vol.PP, no.99, pp.1,1

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Abstract

Currently available EDA tools for design space exploration of Solid State Drives (SSDs) are not able to assess: i) the device architecture inefficiencies; ii) the architecture overdesign for a target performance; iii) the performance degradation caused by the disk usage. These tools feature either an overly high abstraction modeling strategy or lack the required flexibility to perform design exploration. To overcome these problems, this paper proposes SSDExplorer, a tool for fine-grained yet reasonably fast design space exploration of different SSD architectures highlighting possible bottlenecks. To prove its accuracy SSDExplorer has been validated with two real SSDs. SSDExplorer efficiency has been assessed by evaluating the impact of the NAND Flash read retry algorithm impact on the SSD performance as a function of its internal architecture.

Details

  •  BIBTEX:
@ARTICLE{7086014,
author={Zuolo, L. and Zambelli, C. and Micheloni, R. and Indaco, M. and Di Carlo, S. and Prinetto, P. and Bertozzi, D. and Olivo, P.},
journal={Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on},
title={SSDExplorer: a Virtual Platform for Performance/Reliability-oriented Fine-Grained Design Space Exploration of Solid State Drives},
year={2015},
month={},
volume={PP},
number={99},
pages={1-1},
doi={10.1109/TCAD.2015.2422834},
ISSN={0278-0070}
}
  • DOI: 10.1109/TCAD.2015.2422834
  • KEYWORDS: Accuracy;Computational modeling;Computer architecture;Data models;Flash memories;Performance evaluation;Timing;CAD;Design Space Exploration;NAND Flash;SSD;Simulation;Solid-State Drive

 

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