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Embedded System Design - Modeling, Synthesis and Verification (Paperback, 2009 ed.): Daniel D. Gajski, Samar Abdi, Andreas... Embedded System Design - Modeling, Synthesis and Verification (Paperback, 2009 ed.)
Daniel D. Gajski, Samar Abdi, Andreas Gerstlauer, Gunar Schirner
R1,584 Discovery Miles 15 840 Ships in 10 - 15 working days

Embedded System Design: Modeling, Synthesis and Verification introduces a model-based approach to system level design. It presents modeling techniques for both computation and communication at different levels of abstraction, such as specification, transaction level and cycle-accurate level. It discusses synthesis methods for system level architectures, embedded software and hardware components. Using these methods, designers can develop applications with high level models, which are automatically translatable to low level implementations. This book, furthermore, describes simulation-based and formal verification methods that are essential for achieving design confidence. The book concludes with an overview of existing tools along with a design case study outlining the practice of embedded system design. Specifically, this book addresses the following topics in detail: . System modeling at different abstraction levels . Model-based system design . Hardware/Software codesign . Software and Hardware component synthesis . System verification This book is for groups within the embedded system community: students in courses on embedded systems, embedded application developers, system designers and managers, CAD tool developers, design automation, and system engineering.

Embedded System Design - Modeling, Synthesis and Verification (Hardcover, 2009 ed.): Daniel D. Gajski, Samar Abdi, Andreas... Embedded System Design - Modeling, Synthesis and Verification (Hardcover, 2009 ed.)
Daniel D. Gajski, Samar Abdi, Andreas Gerstlauer, Gunar Schirner
R1,792 Discovery Miles 17 920 Ships in 10 - 15 working days

Embedded System Design: Modeling, Synthesis and Verification introduces a model-based approach to system level design. It presents modeling techniques for both computation and communication at different levels of abstraction, such as specification, transaction level and cycle-accurate level. It discusses synthesis methods for system level architectures, embedded software and hardware components. Using these methods, designers can develop applications with high level models, which are automatically translatable to low level implementations. This book, furthermore, describes simulation-based and formal verification methods that are essential for achieving design confidence. The book concludes with an overview of existing tools along with a design case study outlining the practice of embedded system design. Specifically, this book addresses the following topics in detail:

. System modeling at different abstraction levels

. Model-based system design

. Hardware/Software codesign

. Software and Hardware component synthesis

. System verification

This book is for groups within the embedded system community: students in courses on embedded systems, embedded application developers, system designers and managers, CAD tool developers, design automation, and system engineering.

System Level Design from HW/SW to Memory for Embedded Systems - 5th IFIP TC 10 International Embedded Systems Symposium, IESS... System Level Design from HW/SW to Memory for Embedded Systems - 5th IFIP TC 10 International Embedded Systems Symposium, IESS 2015, Foz do Iguacu, Brazil, November 3-6, 2015, Proceedings (Hardcover, 1st ed. 2017)
Marcelo Goetz, Gunar Schirner, Marco Aurelio Wehrmeister, Mohammad Abdullah Al Faruque, Achim Rettberg
R2,330 R1,772 Discovery Miles 17 720 Save R558 (24%) Out of stock

This book constitutes the refereed proceedings of the 5th IFIP TC 10 International Embedded Systems Symposium, IESS 2015, held in Foz do Iguacu, Brazil, in November 2015. The 18 full revised papers presented were carefully reviewed and selected from 25 submissions. The papers present a broad discussion on the design, analysis and verification of embedded and cyber-physical systems including design methodologies, verification, performance analysis, and real-time systems design. They are organized in the following topical sections: cyber-physical systems, system-level design; multi/many-core system design; memory system design; and embedded HW/SW design and applications.

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