Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Modified LSB Watermarking for Image Authentication

View through CrossRef
This paper mainly aims at developing an authentication scheme for digital images. The LSB scheme is chosen base for our proposed work. Through literature survey it is found that conventional LSB scheme provides low embedding rat low distortion and is irreversible. Because of its irreversibility, the conventional LSB scheme cannot be used for critic applications where reversibility is mandatory. Through this literature survey, we learnt that this conventional LSB scheme us only one bit in every pixel for embedding. Our proposed scheme presents a modified LSB embedding strategy that satisfies th reversibility and improves the embedding rate by using two bits in every pixel for embedding.
Title: Modified LSB Watermarking for Image Authentication
Description:
This paper mainly aims at developing an authentication scheme for digital images.
The LSB scheme is chosen base for our proposed work.
Through literature survey it is found that conventional LSB scheme provides low embedding rat low distortion and is irreversible.
Because of its irreversibility, the conventional LSB scheme cannot be used for critic applications where reversibility is mandatory.
Through this literature survey, we learnt that this conventional LSB scheme us only one bit in every pixel for embedding.
Our proposed scheme presents a modified LSB embedding strategy that satisfies th reversibility and improves the embedding rate by using two bits in every pixel for embedding.

Related Results

Digital Image Protection using Keyed Hash Function
Digital Image Protection using Keyed Hash Function
Digital image authentication is an essential attribute for protecting digital image from piracy and copyright violator. Anti-piracy, digital watermarking, and ownership verificatio...
Digital Image Watermarking Algorithms Based on Dual Transform Domain and Self-Recovery
Digital Image Watermarking Algorithms Based on Dual Transform Domain and Self-Recovery
Abstract In view of dual watermarking algorithm for dual two value image watermarking, the watermark information there is a gray image watermarking in the express...
Mitigation of Geometrical Attack in Digital Image Watermarking using Different Transform Based Functions
Mitigation of Geometrical Attack in Digital Image Watermarking using Different Transform Based Functions
The illegal act of digital multimedia data loss the value of information and integrity. The loss of information and integrity born the process of piracy of digital data. The piracy...
Secured Mechanism Towards Integrity of Digital Images Using DWT, DCT, LSB and Watermarking Integrations
Secured Mechanism Towards Integrity of Digital Images Using DWT, DCT, LSB and Watermarking Integrations
"Watermarking" is one method in which digital information is buried in a carrier signal; the hidden information should be related to the carrier signal. There are many ...
A Compressed Domain Robust Video Watermarking Resists Geometric Attack
A Compressed Domain Robust Video Watermarking Resists Geometric Attack
The widespread utilization of mobile devices and the proliferation of video content, facilitated by communication networks, has unfortunately led to issues such as data piracy, ill...
Machining parameters of the patented wood, lightweight stabilised blockboard
Machining parameters of the patented wood, lightweight stabilised blockboard
Abstract Since the introduction of wood cellular material, or Dendrolight®, the process of creating dimensionally stable wood panels (Berger ...
Analysis of Secure Medical Image Communication with Digital Signature and Reversible Watermarking
Analysis of Secure Medical Image Communication with Digital Signature and Reversible Watermarking
<p>Protection of Medical image contents becomes the important issue in computer network security. Digital Watermarking has becomes a promising technique for medical content a...

Back to Top