Computing with Memory for Energy-Efficient Robust Systems

Nonfiction, Science & Nature, Technology, Electronics, Circuits
Cover of the book Computing with Memory for Energy-Efficient Robust Systems by Somnath Paul, Swarup Bhunia, Springer New York
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Somnath Paul, Swarup Bhunia ISBN: 9781461477983
Publisher: Springer New York Publication: September 7, 2013
Imprint: Springer Language: English
Author: Somnath Paul, Swarup Bhunia
ISBN: 9781461477983
Publisher: Springer New York
Publication: September 7, 2013
Imprint: Springer
Language: English

This book analyzes energy and reliability as major challenges faced by designers of computing frameworks in the nanometer technology regime.  The authors describe the existing solutions to address these challenges and then reveal a new reconfigurable computing platform, which leverages high-density nanoscale memory for both data storage and computation to maximize the energy-efficiency and reliability. The energy and reliability benefits of this new paradigm are illustrated and the design challenges are discussed. Various hardware and software aspects of this exciting computing paradigm are described, particularly with respect to hardware-software co-designed frameworks, where the hardware unit can be reconfigured to mimic diverse application behavior.  Finally, the energy-efficiency of the paradigm described is compared with other, well-known reconfigurable computing platforms.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book analyzes energy and reliability as major challenges faced by designers of computing frameworks in the nanometer technology regime.  The authors describe the existing solutions to address these challenges and then reveal a new reconfigurable computing platform, which leverages high-density nanoscale memory for both data storage and computation to maximize the energy-efficiency and reliability. The energy and reliability benefits of this new paradigm are illustrated and the design challenges are discussed. Various hardware and software aspects of this exciting computing paradigm are described, particularly with respect to hardware-software co-designed frameworks, where the hardware unit can be reconfigured to mimic diverse application behavior.  Finally, the energy-efficiency of the paradigm described is compared with other, well-known reconfigurable computing platforms.

More books from Springer New York

Cover of the book Nitric Oxide (NO) and Cancer by Somnath Paul, Swarup Bhunia
Cover of the book SystemVerilog Assertions and Functional Coverage by Somnath Paul, Swarup Bhunia
Cover of the book Pediatric Atlas of Ultrasound- and Nerve Stimulation-Guided Regional Anesthesia by Somnath Paul, Swarup Bhunia
Cover of the book Strategies for Urban Development in Leipzig, Germany by Somnath Paul, Swarup Bhunia
Cover of the book High Density Lipoproteins, Dyslipidemia, and Coronary Heart Disease by Somnath Paul, Swarup Bhunia
Cover of the book Towards Learning and Instruction in Web 3.0 by Somnath Paul, Swarup Bhunia
Cover of the book Central American Biodiversity by Somnath Paul, Swarup Bhunia
Cover of the book Bioarchaeology by Somnath Paul, Swarup Bhunia
Cover of the book Linking Trade and Security by Somnath Paul, Swarup Bhunia
Cover of the book Glasses and Glass Ceramics for Medical Applications by Somnath Paul, Swarup Bhunia
Cover of the book Obesity and Breast Cancer by Somnath Paul, Swarup Bhunia
Cover of the book Prevention of Type 2 Diabetes by Somnath Paul, Swarup Bhunia
Cover of the book Episodes From the Early History of Astronomy by Somnath Paul, Swarup Bhunia
Cover of the book Modeling Phase Transitions in the Brain by Somnath Paul, Swarup Bhunia
Cover of the book Partial Differential Equations II by Somnath Paul, Swarup Bhunia
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy