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Proceedings ArticleDOI

Digital signature of color images using amplitude modulation

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TLDR
A new method based on amplitude modulation is presented that has shown to be resistant to both classical attacks, such as filtering, and geometrical attacks and can be extracted without the original image.
Abstract
Watermarking techniques, also referred to as digital signature, sign images by introducing changes that are imperceptible to the human eye but easily recoverable by a computer program. Generally, the signature is a number which identifies the owner of the image. The locations in the image where the signature is embedded are determined by a secret key. Doing so prevents possible pirates from easily removing the signature. Furthermore, it should be possible to retrieve the signature from an altered image. Possible alternations of signed images include blurring, compression and geometrical transformations such as rotation and translation. These alterations are referred to as attacks. A new method based on amplitude modulation is presented. Single signature bits are multiply embedded by modifying pixel values in the blue channel. These modifications are either additive or subtractive, depending on the value of the bit, and proportional to the luminance. This new method has shown to be resistant to both classical attacks, such as filtering, and geometrical attacks. Moreover, the signature can be extracted without the original image.

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Citations
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Journal ArticleDOI

Invisibility and application functionalities in perceptual watermarking an overview

TL;DR: This paper provides a functional inventory of image watermarking applications and emphasizes the dependency between the application purpose and its need for invisibility, and presents a global framework common to most existing water marking systems.
Patent

Multiple transform utilization and application for secure digital watermarking

TL;DR: In this paper, a fast Fourier transform is used to transform digital blocks in digital information to the frequency domain using a convolution mask from a key, and the chosen message information is encoded into each of the transformed digital blocks by altering the selected amplitudes based on the selected message information.
Patent

Low visibility watermarks using an out-of-phase color

TL;DR: In this paper, a digital watermark component is inverted, and embedded in the black color plane, where the watermark is fragile, since signal processing techniques that combine the color planes with the black colour plane effectively cancels watermark signal in local areas.
Patent

Detection of out-of-phase low visibility watermarks

TL;DR: In this article, the authors presented a method for detecting digital watermarks in a preferred embodiment, where media is embedded with a digital watermark component, and an input device captures a digital image of the illuminated media.
Patent

Method and device for monitoring and analyzing signals

TL;DR: In this article, a method and system for monitoring and analyzing at least one signal is disclosed, where an abstract of at least a reference signal is generated and stored in a reference database.
References
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Journal ArticleDOI

Secure spread spectrum watermarking for multimedia

TL;DR: It is argued that insertion of a watermark under this regime makes the watermark robust to signal processing operations and common geometric transformations provided that the original image is available and that it can be successfully registered against the transformed watermarked image.
Proceedings ArticleDOI

A digital watermark

TL;DR: The paper discusses the feasibility of coding an "undetectable" digital water mark on a standard 512/spl times/512 intensity image with an 8 bit gray scale, capable of carrying such information as authentication or authorisation codes, or a legend essential for image interpretation.
Proceedings ArticleDOI

Techniques for data hiding

TL;DR: This work explores both traditional and novel techniques for addressing the data hiding process and evaluates these techniques in light of three applications: copyright protecting, tamper-proofing, and augmentation data embedding.