Embedded Media Processing


Embedded Media Processing pdf

Download Embedded Media Processing PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Embedded Media Processing book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

Embedded Media Processing


Embedded Media Processing

Author: David J. Katz

language: en

Publisher: Elsevier

Release Date: 2005-10-18


DOWNLOAD





A key technology enabling fast-paced embedded media processing developments is the high-performance, low-power, small-footprint convergent processor, a specialized device that combines the real-time control of a traditional microcontroller with the signal processing power of a DSP. This practical guide is your one-stop shop for understanding how to implement this cutting-edge technology.You will learn how to: - Choose the proper processor for an application. - Architect your system to avoid problems at the outset. - Manage your data flows and memory accesses so that they line up properly - Make smart-trade-offs in portable applications between power considerations and computational performance. - Divide processing tasks across multiple cores. - Program frameworks that optimize performance without needlessly increasing programming model complexity. - Implement benchmarking techniques that will help you adapt a framework to best fit a target application, and much more! Covering the entire spectrum of EMP-related design issues, from easy-to-understand explanations of basic architecture and direct memory access (DMA), to in-depth discussions of code optimization and power management, this practical book will be an invaluable aid to every engineer working with EMP, from the beginner to the seasoned expert. - Comprehensive subject coverage with emphasis on practical application - Essential assembly language code included throughout text - Many real-world examples using Analog's popular Blackfin Processor architecture

Digital Media Processing


Digital Media Processing

Author: Hazarathaiah Malepati

language: en

Publisher: Newnes

Release Date: 2010-06-25


DOWNLOAD





Multimedia processing demands efficient programming in order to optimize functionality. Data, image, audio, and video processing, some or all of which are present in all electronic devices today, are complex programming environments. Optimized algorithms (step-by-step directions) are difficult to create but can make all the difference when developing a new application.This book discusses the most current algorithms available that will maximize your programming keeping in mind the memory and real-time constraints of the architecture with which you are working. A wide range of algorithms is covered detailing basic and advanced multimedia implementations, along with, cryptography, compression, and data error correction. The general implementation concepts can be integrated into many architectures that you find yourself working with on a specific project. Analog Devices' BlackFin technology is used for examples throughout the book. - Discusses how to decrease algorithm development times to streamline your programming - Covers all the latest algorithms needed for contrained systems - Includes case studies on WiMAX, GPS, and portable media players

Hardware/Software Architectures for Low-Power Embedded Multimedia Systems


Hardware/Software Architectures for Low-Power Embedded Multimedia Systems

Author: Muhammad Shafique

language: en

Publisher: Springer Science & Business Media

Release Date: 2011-07-25


DOWNLOAD





This book presents techniques for energy reduction in adaptive embedded multimedia systems, based on dynamically reconfigurable processors. The approach described will enable designers to meet performance/area constraints, while minimizing video quality degradation, under various, run-time scenarios. Emphasis is placed on implementing power/energy reduction at various abstraction levels. To enable this, novel techniques for adaptive energy management at both processor architecture and application architecture levels are presented, such that both hardware and software adapt together, minimizing overall energy consumption under unpredictable, design-/compile-time scenarios.