Computer Architecture Techniques for Power-Efficiency - Martonosi, Margaret
- Format: Broché Voir le descriptif
Vous en avez un à vendre ?
Vendez-le-vôtre50,11 €
Produit Neuf
Ou 12,53 € /mois
- Livraison à 0,01 €
- Livré entre le 27 mai et le 4 juin
Brand new, In English, Fast shipping from London, UK; Tout neuf, en anglais, expédition rapide depuis Londres, Royaume-Uni;ria9783031005930_dbm
- Payez directement sur Rakuten (CB, PayPal, 4xCB...)
- Récupérez le produit directement chez le vendeur
- Rakuten vous rembourse en cas de problème
Gratuit et sans engagement
Félicitations !
Nous sommes heureux de vous compter parmi nos membres du Club Rakuten !
TROUVER UN MAGASIN
Retour
Avis sur Computer Architecture Techniques For Power - Efficiency de Martonosi, Margaret Format Broché - Livre Littérature Générale
0 avis sur Computer Architecture Techniques For Power - Efficiency de Martonosi, Margaret Format Broché - Livre Littérature Générale
Les avis publiés font l'objet d'un contrôle automatisé de Rakuten.
-
Portfolio Joubert "Les Scouts"
Occasion dès 75,00 €
-
Vitalogy; Or, Encyclopedia Of Health And Home
Neuf dès 51,67 €
-
Kodak Pixpro Fz55 :
Neuf dès 48,99 €
-
Product Roadmaps Relaunched
Neuf dès 45,66 €
Occasion dès 33,49 €
-
Citizen Marx
Neuf dès 49,07 €
-
Married Women Who Love Women
Neuf dès 50,64 €
-
Gedichte
Neuf dès 46,66 €
-
The Complete Guide To High-Fire Glazes
3 avis
Neuf dès 27,03 €
Occasion dès 40,98 €
-
Locals Only
1 avis
Neuf dès 27,05 €
Occasion dès 38,00 €
-
Under Siege
Neuf dès 40,31 €
-
Moonwalk By Michael Jackson
2 avis
Occasion dès 70,46 €
-
The Young Adventurer's Collection [Dungeons & Dragons 4-Book Boxed Set]
Neuf dès 35,49 €
-
Gottfried Wilhelm Leibniz: De Conditionibus (Bibliotheque Des Textes Philosophiques)
Neuf dès 37,00 €
-
100 Dives Of A Lifetime
Neuf dès 38,69 €
Occasion dès 25,18 €
-
The Young Adventurer's Collection Box Set 2 (Dungeons & Dragons 4-Book Boxed Set)
Neuf dès 37,27 €
-
Vocal Workouts For The Contemporary Singer Vocal Training Book With Online Audio By Anne Peckham Singing Lessons For Beginners To Advanced Singers Vocal Exercise Guide For Range And Performance
Neuf dès 28,44 €
-
Scottish Public Opinion And The Anglo-Scottish Union, 1699-1707
Neuf dès 30,01 €
-
L'italien
2 avis
Neuf dès 26,90 €
Occasion dès 29,18 €
-
Best Karate, Vol.3
Occasion dès 39,00 €
-
Ocp Oracle Certified Professional Java Se 21 Developer Study Guide
Neuf dès 72,73 €
Produits similaires
Présentation Computer Architecture Techniques For Power - Efficiency de Martonosi, Margaret Format Broché
- Livre Littérature Générale
Résumé :
In the last few years, power dissipation has become an important design constraint, on par with performance, in the design of new computer systems. Whereas in the past, the primary job of the computer architect was to translate improvements in operating frequency and transistor count into performance, now power efficiency must be taken into account at every step of the design process. While for some time, architects have been successful in delivering 40% to 50% annual improvement in processor performance, costs that were previously brushed aside eventually caught up. The most critical of these costs is the inexorable increase in power dissipation and power density in processors. Power dissipation issues have catalyzed new topic areas in computer architecture, resulting in a substantial body of work on more power-efficient architectures. Power dissipation coupled with diminishing performance gains, was also the main cause for the switch from single-core to multi-core architectures and aslowdown in frequency increase. This book aims to document some of the most important architectural techniques that were invented, proposed, and applied to reduce both dynamic power and static power dissipation in processors and memory hierarchies. A significant number of techniques have been proposed for a wide range of situations and this book synthesizes those techniques by focusing on their common characteristics. Table of Contents: Introduction / Modeling, Simulation, and Measurement / Using Voltage and Frequency Adjustments to Manage Dynamic Power / Optimizing Capacitance and Switching Activity to Reduce Dynamic Power / Managing Static (Leakage) Power / Conclusions
Biographie:
Stefanos Kaxiras is a full professor at Uppsala University, Sweden. He holds a Ph.D. degree in Computer Science from the University of Wisconsin. In 1998, he joined the Computing Sciences Center at Bell Labs (Lucent) and later Agere Systems. In 2003 he joined the faculty of the ECE Department of the University of Patras, Greece and in 2010 became a full professor at Uppsala University, Sweden. Kaxiras' research interests are in the areas of memory systems, and multiprocessor/multicore systems, with a focus on power efficiency. He has co-authored more than 100 research papers and 13 US patents, participated in five major European research projects, and currently receives funding from Sweden?EUR(TM)s business incubator and innovation agency VINNOVA. Kaxiras is a Distinguished ACM Scientist and IEEE member. Margaret Martonosi is the Hugh Trumbull Adams '35 Professor of Computer Science at Princeton University, where she has been on the faculty since 1994. She also holds an affiliated faculty appointment in Princeton EE. Martonosi's research interests are in computer architecture and mobile computing, with particular focus on power-efficient systems. Her work has included the development of the Wattch power modeling tool and the Princeton ZebraNet mobile sensor network project for the design and real-world deployment of zebra tracking collars in Kenya. Her current research focuses on hardware-software interface approaches to manage heterogeneous parallelism and power-performance tradeoffs in systems ranging from smartphones to chip multiprocessors to large-scale data centers. Martonosi is a Fellow of both IEEE and ACM. She was the 2013 recipient of the Anita Borg Institute Technical Leadership Award. She has also received the 2013 NCWIT Undergraduate Research Mentoring Award and the 2010 Princeton University Graduate Mentoring Award. In addition to many archival publications, Martonosi is an inventor on six granted US patents, and has co-authored a technical reference book on power-aware computer architecture. She serves on the Board of Directors of the Computing Research Association (CRA). Martonosi completed her Ph.D. at Stanford University, and also holds a Master's degree from Stanford and a bachelor's degree from Cornell University, all in Electrical Engineering....
Détails de conformité du produit
Personne responsable dans l'UE