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Multimedia Compression And Communication Ebook 41 =LINK=


Multimedia Compression and Communication Ebook 41: The Ultimate Guide for Beginners




Are you interested in learning how to compress and transmit multimedia signals such as images, audio and video? Do you want to know the principles behind the most popular multimedia coding and indexing standards, such as MPEG-1/-2/-4/-7, JPEG and H.261? If yes, then this ebook is for you!




Multimedia Compression And Communication Ebook 41



Multimedia Compression and Communication Ebook 41 is a comprehensive and self-contained introduction to the field of multimedia signal processing and communication. It covers the theoretical background of one- and multidimensional signal processing, statistical analysis and modeling, coding and information theory as well as estimation and classification theory. It also provides numerous practical examples and exercises for algorithms and design of multimedia signal compression and transmission systems, as well as systems performing content analysis and indexing of multimedia signals.


In this ebook, you will learn:


  • What are multimedia signals and how they are sampled, quantized and coded



  • What are the features of multimedia signals and how they can be estimated, transformed and classified



  • What are the basic concepts of information theory and how they apply to multimedia compression



  • What are the main techniques of still image coding, such as JPEG, wavelet-based coding and fractal coding



  • What are the main techniques of video coding, such as H.261, MPEG-1/-2/-4/-7, AVC and MC-IWT



  • What are the main techniques of audio coding, such as PCM, ADPCM, MP3 and AAC



  • What are the main applications and standards of multimedia transmission and storage, such as TCP/IP, RTP/RTCP, HTTP, FTP and CD-ROM



By reading this ebook, you will gain a solid foundation of multimedia signal processing and communication that will enable you to understand, analyze and design multimedia systems for various applications. You will also be able to follow the latest developments in this fast-growing field.


One of the main advantages of multimedia compression is that it reduces the amount of data required to represent and store multimedia signals, thus saving bandwidth, storage space and transmission time. Multimedia compression also enables the delivery of high-quality multimedia content over various networks and devices, such as the Internet, mobile phones and digital TV. Multimedia compression can also enhance the security and privacy of multimedia data by applying encryption and watermarking techniques.


However, multimedia communication also poses many challenges that need to be addressed by multimedia signal processing and communication techniques. Some of these challenges are:


  • How to cope with the heterogeneity and variability of multimedia sources, networks and receivers



  • How to deal with the trade-off between compression efficiency and quality distortion



  • How to handle the error-prone and dynamic nature of multimedia transmission channels



  • How to ensure the synchronization and scalability of multimedia streams



  • How to provide the interactivity and adaptability of multimedia services



The field of multimedia coding and communication is constantly evolving to meet these challenges and to exploit new opportunities. Some of the future trends of multimedia coding are:


  • The development of more advanced and efficient compression algorithms that can exploit the characteristics and redundancies of different types of multimedia signals



  • The integration of multiple modalities and dimensions of multimedia signals, such as 3D, holographic, multispectral and multimodal signals



  • The incorporation of semantic and cognitive aspects of multimedia signals, such as content analysis, annotation, retrieval and summarization



  • The adoption of more intelligent and user-centric approaches to multimedia coding, such as perceptual coding, personalized coding and context-aware coding



The author of this ebook is Jens-Rainer Ohm, a professor of electrical engineering and information technology at RWTH Aachen University in Germany. He is an expert in multimedia signal processing and communication, with more than 25 years of research and teaching experience. He is also a member of MPEG and an area editor of IEEE Signal Processing: Image Communication. He has authored or co-authored more than 300 publications in this field, including several books and book chapters.


This ebook is a valuable resource for anyone who wants to learn more about multimedia compression and communication. By reading this ebook, you will gain a comprehensive and up-to-date overview of the theory and practice of multimedia signal processing and communication. You will also acquire the skills and knowledge to design, implement and evaluate multimedia systems for various applications. This ebook will help you to master the fundamentals and to follow the latest developments in this exciting and rapidly changing field.


The target audience of this ebook includes students, researchers and professionals who are interested in multimedia signal processing and communication. This ebook is suitable for undergraduate and graduate courses in electrical engineering, computer science, information technology and related disciplines. It can also serve as a reference book for researchers and engineers who are working on multimedia-related projects. Moreover, this ebook can be useful for anyone who wants to understand the principles and techniques behind the multimedia content that we consume and produce every day.


The structure and organization of this ebook are as follows:


  • Chapter 1 introduces the concept and scope of multimedia signal processing and communication, as well as the motivation and objectives of this ebook.



  • Chapter 2 reviews the basics of signals and sampling, including the representation, quantization and coding of analog and digital signals.



  • Chapter 3 presents the statistical analysis of multimedia signals, such as probability, random variables, random processes and correlation.



  • Chapter 4 covers the linear systems and transforms that are widely used in multimedia signal processing, such as convolution, Fourier transform, Z-transform and discrete cosine transform.



  • Chapter 5 discusses the pre- and postprocessing techniques that are applied to multimedia signals, such as filtering, enhancement, restoration and interpolation.



  • Chapter 6 introduces the features of multimedia signals and how they can be estimated, transformed and classified, such as signal parameters, feature vectors, feature transforms and classifiers.



  • Chapter 7 explains the basic concepts of information theory and how they apply to multimedia compression, such as entropy, mutual information, source coding theorem and rate-distortion theory.



  • Chapter 8 describes the main techniques of still image coding, such as JPEG, wavelet-based coding and fractal coding.



  • Chapter 9 describes the main techniques of video coding, such as H.261, MPEG-1/-2/-4/-7, AVC and MC-IWT.



  • Chapter 10 describes the main techniques of audio coding, such as PCM, ADPCM, MP3 and AAC.



  • Chapter 11 illustrates the main applications and standards of multimedia transmission and storage, such as TCP/IP, RTP/RTCP, HTTP, FTP and CD-ROM.



  • Chapter 12 summarizes the main points of this ebook and provides some directions for future research.



You can get this ebook by visiting the website of SpringerLink (https://link.springer.com/book/10.1007/978-3-642-18750-6). You can either purchase a hardcopy or download an e-book version. You can also access some parts of this ebook for free by registering on the website. Alternatively, you can check if your library has a subscription to SpringerLink or if you can borrow this ebook from another library. d282676c82


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