Energy-Aware Memory Management for Embedded Multimedia Systems: A Computer-Aided Design Approach / Edition 1

Energy-Aware Memory Management for Embedded Multimedia Systems: A Computer-Aided Design Approach / Edition 1

ISBN-10:
1138112909
ISBN-13:
9781138112902
Pub. Date:
06/14/2017
Publisher:
Taylor & Francis
ISBN-10:
1138112909
ISBN-13:
9781138112902
Pub. Date:
06/14/2017
Publisher:
Taylor & Francis
Energy-Aware Memory Management for Embedded Multimedia Systems: A Computer-Aided Design Approach / Edition 1

Energy-Aware Memory Management for Embedded Multimedia Systems: A Computer-Aided Design Approach / Edition 1

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Overview

Energy-Aware Memory Management for Embedded Multimedia Systems: A Computer-Aided Design Approach presents recent computer-aided design (CAD) ideas that address memory management tasks, particularly the optimization of energy consumption in the memory subsystem. It explains how to efficiently implement CAD solutions, including theoretical methods and novel algorithms.

The book covers various energy-aware design techniques, including data-dependence analysis techniques, memory size estimation methods, extensions of mapping approaches, and memory banking approaches. It shows how these techniques are used to evaluate the data storage of an application, reduce dynamic and static energy consumption, design energy-efficient address generation units, and much more.

Providing an algebraic framework for memory management tasks, this book illustrates how to optimize energy consumption in memory subsystems using CAD solutions. The algorithmic style of the text should help electronic design automation (EDA) researchers and tool developers create prototype software tools for system-level exploration, with the goal to ultimately obtain an optimized architectural solution of the memory subsystem.


Product Details

ISBN-13: 9781138112902
Publisher: Taylor & Francis
Publication date: 06/14/2017
Series: Chapman & Hall/CRC Computer and Information Science Series
Pages: 360
Product dimensions: 6.12(w) x 9.19(h) x (d)

About the Author

Florin Balasa is an associate professor in the Department of Computer Science and Engineering at the American University in Cairo. A senior member of IEEE, Dr. Balasa holds two patents and is an associate editor of the International Journal of Computers and Electrical Engineering. He has also been a recipient of a National Science Foundation CAREER Award. His research focuses on algorithms and software systems for VLSI design automation.

Dhiraj K. Pradhan is a chair and professor in the Department of Computer Science at the University of Bristol. A fellow of ACM, IEEE, and the Japan Society of Promotion of Science, Dr. Pradhan holds two patents and has been a recipient of the Humboldt Prize and Fulbright-Flad Chair in Computer Science. For more than thirty years, his research has focused on VLSI computer-aided design and testing as well as fault-tolerant computing, computer architecture, and parallel processing.

Table of Contents

Computer-Aided Design for the Energy Optimization in the Memory Architecture of Embedded Systems. The Power of Polyhedra. Computation of Data Storage Requirements for Affine Algorithmic Specifications. Polyhedral Techniques for Parametric Memory Requirement Estimation. Storage Allocation for Streaming-Based Register File. Optimization of the Dynamic Energy Consumption and Signal Mapping in Hierarchical Memory Organizations. Leakage Current Mechanisms and Estimation in Memories and Logic. Leakage Control in SoCs. Energy-Efficient Memory Port Assignment. Energy-Efficient Address-Generation Units and Their Design Methodology. Index.

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