Iris Biometric Watermarking for Authentication Using Multiband Discrete Wavelet Transform and Singular-Value Decomposition

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
S. Joyce, S. Veni
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引用次数: 0

Abstract

The most advanced technology, watermarking enables intruders to access the database. Various techniques have been developed for information security. Watermarks and histories are linked to many biometric techniques such as fingerprints, palm positions, gait, iris and speech are recommended. Digital watermarking is the utmost successful approaches among the methods available. In this paper the multiband wavelet transforms and singular value decomposition are discussed to establish a watermarking strategy rather than biometric information. The use of biometrics instead of conservative watermarks can enhance information protection. The biometric technology being used is iris. The iris template can be viewed as a watermark, while an iris mode of communication may be used to help information security with the addition of a watermark to the image of the iris. The research involves verifying authentication against different attacks such as no attacks, Jpeg Compression, Gaussian, Median Filtering and Blurring. The Algorithm increases durability and resilience when exposed to geometric and frequency attacks. Finally, the proposed framework can be applied not only to the assessment of iris biometrics, but also to other areas where privacy is critical.
基于多频带离散小波变换和奇异值分解的虹膜生物特征认证水印
水印技术是最先进的技术,它使入侵者能够访问数据库。已经开发了用于信息安全的各种技术。水印和历史记录与许多生物识别技术有关,如指纹、手掌位置、步态、虹膜和语音。数字水印是现有方法中最成功的方法。本文讨论了多频带小波变换和奇异值分解来建立一种水印策略,而不是生物特征信息。使用生物特征代替保守的水印可以增强信息保护。目前使用的生物识别技术是虹膜。虹膜模板可以被视为水印,而虹膜通信模式可以通过向虹膜图像添加水印来帮助信息安全。该研究涉及验证针对不同攻击的身份验证,如无攻击、Jpeg压缩、高斯、中值滤波和模糊。该算法在受到几何攻击和频率攻击时提高了耐久性和弹性。最后,所提出的框架不仅可以应用于虹膜生物特征的评估,还可以应用于隐私至关重要的其他领域。
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来源期刊
CiteScore
1.20
自引率
11.80%
发文量
69
期刊介绍: The International Journal of Electrical and Computer Engineering Systems publishes original research in the form of full papers, case studies, reviews and surveys. It covers theory and application of electrical and computer engineering, synergy of computer systems and computational methods with electrical and electronic systems, as well as interdisciplinary research. Power systems Renewable electricity production Power electronics Electrical drives Industrial electronics Communication systems Advanced modulation techniques RFID devices and systems Signal and data processing Image processing Multimedia systems Microelectronics Instrumentation and measurement Control systems Robotics Modeling and simulation Modern computer architectures Computer networks Embedded systems High-performance computing Engineering education Parallel and distributed computer systems Human-computer systems Intelligent systems Multi-agent and holonic systems Real-time systems Software engineering Internet and web applications and systems Applications of computer systems in engineering and related disciplines Mathematical models of engineering systems Engineering management.
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