Statistical Assessment of Discrimination Capabilities of a Fractional Calculus Based Image Watermarking System for Gaussian Watermarks
Mario Gonzalez-Lee,
Hector Vazquez-Leal,
Luis J. Morales-Mendoza,
Mariko Nakano-Miyatake,
Hector Perez-Meana,
Juan R. Laguna-Camacho
Affiliations
Mario Gonzalez-Lee
Facultad de Ingeniería en Electrónica y Comunicaciones, Universidad Veracruzana, Av. Venustiano Carranza S/N, Poza Rica Veracruz C.P. 93390, Mexico
Hector Vazquez-Leal
Facultad de Instrumentación Electrónica, Universidad Veracruzana Lomas del Estadio S/N, Xalapa Veracruz C.P. 91090, Mexico
Luis J. Morales-Mendoza
Facultad de Ingeniería en Electrónica y Comunicaciones, Universidad Veracruzana, Av. Venustiano Carranza S/N, Poza Rica Veracruz C.P. 93390, Mexico
Mariko Nakano-Miyatake
Seccion de Estudios de Posgrado e Investigacion, Instituto Politécnico Nacional, Av. Santa Ana No. 1000, Del. Coyacan, Ciudad de Mexico C.P. 04440, Mexico
Hector Perez-Meana
Seccion de Estudios de Posgrado e Investigacion, Instituto Politécnico Nacional, Av. Santa Ana No. 1000, Del. Coyacan, Ciudad de Mexico C.P. 04440, Mexico
Juan R. Laguna-Camacho
Facultad de Ingeniería en Mecánica Electrica, Universidad Veracruzana, Av. Venustiano Carranza S/N, Poza Rica Veracruz C.P. 93390, Mexico
In this paper, we explore the advantages of a fractional calculus based watermarking system for detecting Gaussian watermarks. To reach this goal, we selected a typical watermarking scheme and replaced the detection equation set by another set of equations derived from fractional calculus principles; then, we carried out a statistical assessment of the performance of both schemes by analyzing the Receiver Operating Characteristic (ROC) curve and the False Positive Percentage (FPP) when they are used to detect Gaussian watermarks. The results show that the ROC of a fractional equation based scheme has 48.3% more Area Under the Curve (AUC) and a False Positives Percentage median of 0.2% whilst the selected typical watermarking scheme has 3%. In addition, the experimental results suggest that the target applications of fractional schemes for detecting Gaussian watermarks are as a semi-fragile image watermarking systems robust to Gaussian noise.