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Energy Efficient Embedded Video Proc...
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SpringerLink (Online service)
Energy Efficient Embedded Video Processing Systems = A Hardware-Software Collaborative Approach /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Energy Efficient Embedded Video Processing Systems/ by Muhammad Usman Karim Khan, Muhammad Shafique, Jörg Henkel.
Reminder of title:
A Hardware-Software Collaborative Approach /
Author:
Khan, Muhammad Usman Karim.
other author:
Shafique, Muhammad.
Description:
VIII, 238 p. 107 illus., 105 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Electronic circuits. -
Online resource:
https://doi.org/10.1007/978-3-319-61455-7
ISBN:
9783319614557
Energy Efficient Embedded Video Processing Systems = A Hardware-Software Collaborative Approach /
Khan, Muhammad Usman Karim.
Energy Efficient Embedded Video Processing Systems
A Hardware-Software Collaborative Approach /[electronic resource] :by Muhammad Usman Karim Khan, Muhammad Shafique, Jörg Henkel. - 1st ed. 2018. - VIII, 238 p. 107 illus., 105 illus. in color.online resource.
Chapter 1. Introduction -- Chapter 2. Background and State-of-the-Art -- Chapter 3. Energy-Efficient Video System Design -- Chapter 4. Energy-Efficient Software Design for Video Systems -- Chapter 5. Energy-Efficient Hardware Design for Video Systems -- Chapter 6. Benchmarks, Results and Analysis -- Chapter 7. Conclusion and Future Outlook -- Appendix A -- Appendix B -- Appendix C.
This book provides its readers with the means to implement energy-efficient video systems, by using different optimization approaches at multiple abstraction levels. The authors evaluate the complete video system with a motive to optimize its different software and hardware components in synergy, increase the throughput-per-watt, and address reliability issues. Subsequently, this book provides algorithmic and architectural enhancements, best practices and deployment models for new video systems, while considering new implementation paradigms of hardware accelerators, parallelism for heterogeneous multi- and many-core systems, and systems with long life-cycles. Particular emphasis is given to the current video encoding industry standard H.264/AVC, and one of the latest video encoders (High Efficiency Video Coding, HEVC).
ISBN: 9783319614557
Standard No.: 10.1007/978-3-319-61455-7doiSubjects--Topical Terms:
563332
Electronic circuits.
LC Class. No.: TK7888.4
Dewey Class. No.: 621.3815
Energy Efficient Embedded Video Processing Systems = A Hardware-Software Collaborative Approach /
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Chapter 1. Introduction -- Chapter 2. Background and State-of-the-Art -- Chapter 3. Energy-Efficient Video System Design -- Chapter 4. Energy-Efficient Software Design for Video Systems -- Chapter 5. Energy-Efficient Hardware Design for Video Systems -- Chapter 6. Benchmarks, Results and Analysis -- Chapter 7. Conclusion and Future Outlook -- Appendix A -- Appendix B -- Appendix C.
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This book provides its readers with the means to implement energy-efficient video systems, by using different optimization approaches at multiple abstraction levels. The authors evaluate the complete video system with a motive to optimize its different software and hardware components in synergy, increase the throughput-per-watt, and address reliability issues. Subsequently, this book provides algorithmic and architectural enhancements, best practices and deployment models for new video systems, while considering new implementation paradigms of hardware accelerators, parallelism for heterogeneous multi- and many-core systems, and systems with long life-cycles. Particular emphasis is given to the current video encoding industry standard H.264/AVC, and one of the latest video encoders (High Efficiency Video Coding, HEVC).
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