Cantitate/Preț
Produs

Computing with Memory for Energy-Efficient Robust Systems

Autor Somnath Paul, Swarup Bhunia
en Limba Engleză Paperback – 23 aug 2016
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.
Citește tot Restrânge

Toate formatele și edițiile

Toate formatele și edițiile Preț Express
Paperback (1) 67354 lei  6-8 săpt.
  Springer – 23 aug 2016 67354 lei  6-8 săpt.
Hardback (1) 68211 lei  6-8 săpt.
  Springer – 7 sep 2013 68211 lei  6-8 săpt.

Preț: 67354 lei

Preț vechi: 79240 lei
-15% Nou

Puncte Express: 1010

Preț estimativ în valută:
12889 13556$ 10770£

Carte tipărită la comandă

Livrare economică 08-22 ianuarie 25

Preluare comenzi: 021 569.72.76

Specificații

ISBN-13: 9781493948192
ISBN-10: 1493948199
Pagini: 224
Ilustrații: XIII, 210 p. 73 illus., 41 illus. in color.
Dimensiuni: 155 x 235 x 12 mm
Greutate: 0.32 kg
Ediția:Softcover reprint of the original 1st ed. 2014
Editura: Springer
Colecția Springer
Locul publicării:New York, NY, United States

Cuprins

Part I Introduction.- Challenges in Computing for Nanoscale Technologies.- A Survey of Computing Architectures.- Motivation for a Memory-Based Computing Hardware.- Part II Memory Based Computing.- Key Features of Memory-Based Computing.- Overview of Hardware and Software Architectures.- Application of Memory-Based Computing.- Part III Hardware Framework.- A Memory Based Generic Reconfigurable Framework.- MAHA Hardware Architecture.- Part IV Software Framework.- Application Analysis.- Application Mapping to MBC Hardware.

Textul de pe ultima copertă

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.
 ·         Introduces new paradigm for hardware reconfigurable frameworks, which leverages dense memory array as a malleable resource, which can be used for information storage as well as computation;
·         Merges spatial and temporal computing to minimize interconnect overhead and achieve better scalability compared to state-of-the-art reconfigurable computing platforms;
·         Enables efficient mapping of diverse data-intensive applications from domains of signal processing, multimedia and security applications.

Caracteristici

Introduces new paradigm for hardware reconfigurable frameworks, which leverages dense memory array as a malleable resource, which can be used for information storage as well as computation Merges spatial and temporal computing to minimize interconnect overhead and achieve better scalability compared to state-of-the-art reconfigurable computing platforms Enables efficient mapping of diverse data-intensive applications from domains of signal processing, multimedia and security applications