Difference between revisions of "Mirhoseini2013automated"

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|abstract=<p>We propose a framework that enables intensive computation on ultra-low power devices with discontinuous energy-harvesting supplies. We devise an optimization algorithm that efficiently partitions the applications into smaller computational steps during high-level synthesis. Our system finds lowoverhead checkpoints that minimize recomputation cost due to power losses, then inserts the checkpoints at the design\&rsquo;s registertransfer level. The checkpointing rate is automatically adapted to the source\&rsquo;s realtime behavior. We evaluate our mechanisms on a battery-less RF energy-harvester platform. Extensive experiments targeting applications in medical implant devices demonstrate our approach\&rsquo;s ability to successfully execute complex computations for various supply patterns with low time, energy, and area overheads.</p>
|abstract=<p>We propose a framework that enables intensive computation on ultra-low power devices with discontinuous energy-harvesting supplies. We devise an optimization algorithm that efficiently partitions the applications into smaller computational steps during high-level synthesis. Our system finds lowoverhead checkpoints that minimize recomputation cost due to power losses, then inserts the checkpoints at the design\&rsquo;s registertransfer level. The checkpointing rate is automatically adapted to the source\&rsquo;s realtime behavior. We evaluate our mechanisms on a battery-less RF energy-harvester platform. Extensive experiments targeting applications in medical implant devices demonstrate our approach\&rsquo;s ability to successfully execute complex computations for various supply patterns with low time, energy, and area overheads.</p>
|pages=27 - 32
|pages=27 - 32
|month=9
|year=2013
|booktitle=2013 IEEE International Symposium on Low Power Electronics and Design (ISLPED)International Symposium on Low Power Electronics and Design (ISLPED)
|booktitle=2013 IEEE International Symposium on Low Power Electronics and Design (ISLPED)International Symposium on Low Power Electronics and Design (ISLPED)
|title=Automated checkpointing for enabling intensive applications on energy harvesting devices
|title=Automated checkpointing for enabling intensive applications on energy harvesting devices
|entry=inproceedings
|entry=inproceedings
|date=2013-Se-01
}}
}}

Revision as of 04:41, 4 September 2021

Mirhoseini2013automated
entryinproceedings
address
annote
authorAzalia Mirhoseini and Songhori, Ebrahim M. and Farinaz Koushanfar
booktitle2013 IEEE International Symposium on Low Power Electronics and Design (ISLPED)International Symposium on Low Power Electronics and Design (ISLPED)
chapter
edition
editor
howpublished
institution
journal
month9
note
number
organization
pages27 - 32
publisher
school
series
titleAutomated checkpointing for enabling intensive applications on energy harvesting devices
type
volume
year2013
doi10.1109/ISLPED.2013.6629262
issn
isbn
urlhttp://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6629262
pdf


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Email:
farinaz@ucsd.edu
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Address:
Electrical & Computer Engineering
University of California, San Diego
9500 Gilman Drive, MC 0407
Jacobs Hall, Room 6401
La Jolla, CA 92093-0407
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Lab Location: EBU1-2514
University of California San Diego
9500 Gilman Dr, La Jolla, CA 92093