Codes+iss11 Proceedings of the 9th IEEE/ACM International Conference on Hardware/Software Code Design and System Synthesis

Codes+iss11 Proceedings of the 9th IEEE/ACM International Conference on Hardware/Software Code Design and System Synthesis
Author: Codes Iss 11 Conference Committee
Publisher:
Total Pages: 408
Release: 2011-11
Genre: Computers
ISBN: 9781450307154

Embedded Systems Week is an exciting event which brings together conferences, tutorials, and workshops centered on various aspects of embedded systems research and development. Three leading conferences in the area - CASES, CODES+ISSS, and EMSOFT - will take place at the same time and location, allowing attendees to benefit from a wide range of topics covered by these conferences and their associated tutorials and workshops.The ACM MSWiM Conference features symposia and workshops on emerging topics related to wireless networking and mobile computing

CODES+ISSS

CODES+ISSS
Author:
Publisher:
Total Pages: 372
Release: 2005
Genre: Computer-aided design
ISBN:

CODES+ISSS 2011

CODES+ISSS 2011
Author:
Publisher:
Total Pages: 240
Release: 2011
Genre: Compilers (Computer programs)
ISBN: 9781450307123

Handbook of Signal Processing Systems

Handbook of Signal Processing Systems
Author: Shuvra S. Bhattacharyya
Publisher: Springer Science & Business Media
Total Pages: 1099
Release: 2010-09-10
Genre: Technology & Engineering
ISBN: 1441963456

It gives me immense pleasure to introduce this timely handbook to the research/- velopment communities in the ?eld of signal processing systems (SPS). This is the ?rst of its kind and represents state-of-the-arts coverage of research in this ?eld. The driving force behind information technologies (IT) hinges critically upon the major advances in both component integration and system integration. The major breakthrough for the former is undoubtedly the invention of IC in the 50’s by Jack S. Kilby, the Nobel Prize Laureate in Physics 2000. In an integrated circuit, all components were made of the same semiconductor material. Beginning with the pocket calculator in 1964, there have been many increasingly complex applications followed. In fact, processing gates and memory storage on a chip have since then grown at an exponential rate, following Moore’s Law. (Moore himself admitted that Moore’s Law had turned out to be more accurate, longer lasting and deeper in impact than he ever imagined. ) With greater device integration, various signal processing systems have been realized for many killer IT applications. Further breakthroughs in computer sciences and Internet technologies have also catalyzed large-scale system integration. All these have led to today’s IT revolution which has profound impacts on our lifestyle and overall prospect of humanity. (It is hard to imagine life today without mobiles or Internets!) The success of SPS requires a well-concerted integrated approach from mul- ple disciplines, such as device, design, and application.

Real-Time Simulation Technologies: Principles, Methodologies, and Applications

Real-Time Simulation Technologies: Principles, Methodologies, and Applications
Author: Katalin Popovici
Publisher: CRC Press
Total Pages: 663
Release: 2017-12-19
Genre: Technology & Engineering
ISBN: 1351833391

Real-Time Simulation Technologies: Principles, Methodologies, and Applications is an edited compilation of work that explores fundamental concepts and basic techniques of real-time simulation for complex and diverse systems across a broad spectrum. Useful for both new entrants and experienced experts in the field, this book integrates coverage of detailed theory, acclaimed methodological approaches, entrenched technologies, and high-value applications of real-time simulation—all from the unique perspectives of renowned international contributors. Because it offers an accurate and otherwise unattainable assessment of how a system will behave over a particular time frame, real-time simulation is increasingly critical to the optimization of dynamic processes and adaptive systems in a variety of enterprises. These range in scope from the maintenance of the national power grid, to space exploration, to the development of virtual reality programs and cyber-physical systems. This book outlines how, for these and other undertakings, engineers must assimilate real-time data with computational tools for rapid decision making under uncertainty. Clarifying the central concepts behind real-time simulation tools and techniques, this one-of-a-kind resource: Discusses the state of the art, important challenges, and high-impact developments in simulation technologies Provides a basis for the study of real-time simulation as a fundamental and foundational technology Helps readers develop and refine principles that are applicable across a wide variety of application domains As science moves toward more advanced technologies, unconventional design approaches, and unproven regions of the design space, simulation tools are increasingly critical to successful design and operation of technical systems in a growing number of application domains. This must-have resource presents detailed coverage of real-time simulation for system design, parallel and distributed simulations, industry tools, and a large set of applications.

Debugging Systems-on-Chip

Debugging Systems-on-Chip
Author: Bart Vermeulen
Publisher: Springer
Total Pages: 314
Release: 2014-07-14
Genre: Technology & Engineering
ISBN: 3319062425

This book describes an approach and supporting infrastructure to facilitate debugging the silicon implementation of a System-on-Chip (SOC), allowing its associated product to be introduced into the market more quickly. Readers learn step-by-step the key requirements for debugging a modern, silicon SOC implementation, nine factors that complicate this debugging task, and a new debug approach that addresses these requirements and complicating factors. The authors’ novel communication-centric, scan-based, abstraction-based, run/stop-based (CSAR) debug approach is discussed in detail, showing how it helps to meet debug requirements and address the nine, previously identified factors that complicate debugging silicon implementations of SOCs. The authors also derive the debug infrastructure requirements to support debugging of a silicon implementation of an SOC with their CSAR debug approach. This debug infrastructure consists of a generic on-chip debug architecture, a configurable automated design-for-debug flow to be used during the design of an SOC, and customizable off-chip debugger software. Coverage includes an evaluation of the efficiency and effectiveness of the CSAR approach and its supporting infrastructure, using six industrial SOCs and an illustrative, example SOC model. The authors also quantify the hardware cost and design effort to support their approach.