Noise Tolerant Data Authentication for Wireless Communication

Nonfiction, Computers, Application Software, Multimedia, Science & Nature, Technology, Electronics
Cover of the book Noise Tolerant Data Authentication for Wireless Communication by Obaid Ur-Rehman, Natasa Zivic, Springer International Publishing
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Author: Obaid Ur-Rehman, Natasa Zivic ISBN: 9783319789422
Publisher: Springer International Publishing Publication: March 31, 2018
Imprint: Springer Language: English
Author: Obaid Ur-Rehman, Natasa Zivic
ISBN: 9783319789422
Publisher: Springer International Publishing
Publication: March 31, 2018
Imprint: Springer
Language: English

This book provides insight into the challenges in providing data authentication over wireless communication channels. The authors posit that established standard authentication mechanisms – for wired devices – are not sufficient to authenticate data, such as voice, images, and video over wireless channels. The authors propose new mechanisms based on the so-called soft authentication algorithms, which tolerate some legitimate modifications in the data that they protect. The authors explain that the goal of these algorithms is that they are tolerant to changes in the content but are still able to identify the forgeries. The authors go on to describe how an additional advantage of the soft authentication algorithms is the ability to identify the locations of the modifications and correct them if possible. The authors show how to achieve this by protecting the data features with the help of error correcting codes. The correction methods are typically based on watermarking, as the authors discuss in the book.

  • Provides a discussion of data (particularly image) authentication methods in the presence of noise experienced in wireless communication;

  • Presents a new class of soft authentication methods, instead of the standard hard authentication methods, used to tolerate minor changes in image data;

  • Features authentication methods based on the usage of authentication tags as well as digital watermarks.

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This book provides insight into the challenges in providing data authentication over wireless communication channels. The authors posit that established standard authentication mechanisms – for wired devices – are not sufficient to authenticate data, such as voice, images, and video over wireless channels. The authors propose new mechanisms based on the so-called soft authentication algorithms, which tolerate some legitimate modifications in the data that they protect. The authors explain that the goal of these algorithms is that they are tolerant to changes in the content but are still able to identify the forgeries. The authors go on to describe how an additional advantage of the soft authentication algorithms is the ability to identify the locations of the modifications and correct them if possible. The authors show how to achieve this by protecting the data features with the help of error correcting codes. The correction methods are typically based on watermarking, as the authors discuss in the book.

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