Design Technology for Heterogeneous Embedded Systems

Nonfiction, Science & Nature, Technology, Electronics, Circuits, Computers, Advanced Computing, Engineering, Computer Architecture
Cover of the book Design Technology for Heterogeneous Embedded Systems by , Springer Netherlands
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9789400711259
Publisher: Springer Netherlands Publication: February 2, 2012
Imprint: Springer Language: English
Author:
ISBN: 9789400711259
Publisher: Springer Netherlands
Publication: February 2, 2012
Imprint: Springer
Language: English

Design technology to address the new and vast problem of heterogeneous embedded systems design while remaining compatible with standard “More Moore” flows, i.e. capable of simultaneously handling both silicon complexity and system complexity, represents one of the most important challenges facing the semiconductor industry today and will be for several years to come. While the micro-electronics industry, over the years and with its spectacular and unique evolution, has built its own specific design methods to focus mainly on the management of complexity through the establishment of abstraction levels, the emergence of device heterogeneity requires new approaches enabling the satisfactory design of physically heterogeneous embedded systems for the widespread deployment of such systems.

Heterogeneous Embedded Systems, compiled largely from a set of contributions from participants of past editions of the Winter School on Heterogeneous Embedded Systems Design Technology (FETCH), proposes a necessarily broad and holistic overview of design techniques used to tackle the various facets of heterogeneity in terms of technology and opportunities at the physical level, signal representations and different abstraction levels, architectures and components based on hardware and software, in all the main phases of design (modeling, validation with multiple models of computation, synthesis and optimization). It concentrates on the specific issues at the interfaces, and is divided into two main parts. The first part examines mainly theoretical issues and focuses on the modeling, validation and design techniques themselves. The second part illustrates the use of these methods in various design contexts at the forefront of new technology and architectural developments.

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

Design technology to address the new and vast problem of heterogeneous embedded systems design while remaining compatible with standard “More Moore” flows, i.e. capable of simultaneously handling both silicon complexity and system complexity, represents one of the most important challenges facing the semiconductor industry today and will be for several years to come. While the micro-electronics industry, over the years and with its spectacular and unique evolution, has built its own specific design methods to focus mainly on the management of complexity through the establishment of abstraction levels, the emergence of device heterogeneity requires new approaches enabling the satisfactory design of physically heterogeneous embedded systems for the widespread deployment of such systems.

Heterogeneous Embedded Systems, compiled largely from a set of contributions from participants of past editions of the Winter School on Heterogeneous Embedded Systems Design Technology (FETCH), proposes a necessarily broad and holistic overview of design techniques used to tackle the various facets of heterogeneity in terms of technology and opportunities at the physical level, signal representations and different abstraction levels, architectures and components based on hardware and software, in all the main phases of design (modeling, validation with multiple models of computation, synthesis and optimization). It concentrates on the specific issues at the interfaces, and is divided into two main parts. The first part examines mainly theoretical issues and focuses on the modeling, validation and design techniques themselves. The second part illustrates the use of these methods in various design contexts at the forefront of new technology and architectural developments.

More books from Springer Netherlands

Cover of the book Nuclear Cardiology and Cardiac Magnetic Resonance by
Cover of the book Beyond the Inner and the Outer by
Cover of the book The Social Direction of the Public Sciences by
Cover of the book Managing the Prenatal Environment to Enhance Livestock Productivity by
Cover of the book Women at High Risk to Breast Cancer by
Cover of the book The MRCGP Examination by
Cover of the book Approaches to Natural Language by
Cover of the book Bone Metastasis and Molecular Mechanisms by
Cover of the book My personal Adaptive Global NET (MAGNET) by
Cover of the book Calcium Signaling by
Cover of the book Clinical Pathology of the Endocrine Ovary by
Cover of the book The Cambridge-Tilburg Law Lectures by
Cover of the book Aging Research in Yeast by
Cover of the book Magnetism, Planetary Rotation, and Convection in the Solar System: Retrospect and Prospect by
Cover of the book Advances in Interlaboratory Testing and Evaluation of Bituminous Materials by
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