Analisis Watermarking Menggunakan Metode Discrete Cosine Transform (DCT) dan Discrete Fourier Transform (DFT)
Abstract
Digital image watermarking is the insertion of watermarks into digital image media. Several types of watermarking methods used are Discrete Cosine Transform (DCT) and Discrete Fourier Transform (DFT). Both of these watermarking methods work in the frequency domain (transform). Digital image watermarking using the frequency domain is carried out on the frequency coefficient. This study used 30 digital image data as material for digital image watermaking analysis with 10 data each in binary, grayscale and color digital images in jpg, png and bmp formats. Digital images in the binary and grayscale domains are conversions from digital images in the true color (RGB) domain. Digital image watermarking includes three main processes, namely embedding the watermarked image on the original digital image, extracting the watermarked image and measuring the correlation between the two digital images. Correlation aims to measure two variables that have the same relationship. The technology used in this research work is MATLAB (Matrix Laboratory) as a high-performance programming language for computing in solving problems with solutions expressed in mathematical notation. The results of the discussion prove that the watermarking process in terms of color, for DCT, RGB is better and binary is better for DFT. And the watermaking process, in terms of the type of watermark inserted, for both DCT and DFT, a good watermark is an invisible watermark.
Downloads
References
Dhiman , S., & Singh, O. (2016). Analysis of Visible and Invisible Image Watermarking. International Journal of Computer Applications.
Digdoyo, P., Gonydjaja, R., & Mutiara, R. R. (2005). Penyisipan Watermark Pada Citra Grayscale Berbasis SVD. Jakarta : Universitas Gunadarma
Dwiandiyanta, B. Y. (2011). Perbandingan Watermarking Citra dengan Alihragam Wavelet dan Discrete Cosine Transform. Buana Informatika.
Emami, M. S. (2014). Spatial Domain Approaches for Real-Time Ownership Identification.Malasya : Journal of advances in infomation technology, 1-2.
Fadilah, U., Sawitri, R. D., Suprijono, H., & Wulandari, S. A. (2012). Perbandingan Kinerja Sistem Kompresi Pada Citra Digital Retinopathy Berbasis Tansformasi DFT Dan DCT .Semarang : Universitas Dian Nuswantoro
Fahmi.(2007).Studi dan Implementasi Watermarking Citra Digital dengan Menggunakan Fungsi Hash.Indonesia : Institut Teknologi Bandung.
Gilani, S. M., & Skodras, A. N. (2000). DLT Based Digital Image Watermarking.
Hakim, A. R. (2012, Juni). Analisa Perbandingan Watermarking Image Mengguakan Discrete Wavelet Transform. Jakarta : Universitas Indonesia, pp. 14-16.
Harahap, H., Budiman, G., & Novamizanti, L. (2016). Implementasi Teknik Watermarking menggunakan FFT dan Spread Spectrum Watermarkpada Data Audio Digital. elkomika.
Hopnner, K. (2005). Strategies for including graphics in LATEX document. TUGboat, 3.
Hartung, F., & Kutter, M. (1999). Multimedia Watermarking Techniques. IEEE.
Hidayat, E. Y., & Adnan, F. N. (2013, Juni 23). Hybrid DWT-DCT Watermarking Citra Digital Menggunakan Metode Comparison Based Correlation Embedding. Seminar Nasional Teknologi Informasi & Komunikasi Terapan 2012, p. 2.
Irianto, S. Y. (2013). Analis Citra Digital Dan Content Based Image Retrieval.
Jhon, & Daris. (2009). Understanding Correlation. U.S.
Joshi, Amit, Vivekanand Mishra, dan R.M.Patrikar.2012.Real Time Implementation of Watermarking.
Kusuma, A. A., Iwut, I., & Fauzi, H. (2015). Analisis Korelaso Kemerahan Warna Citra Kelopak Mata Dalam Bagian Bawah Dengan Hemoglobin Darah.
Kusumanto , R., & Tompunu , A. N. (2011). Pengolahan Citra Digital Untuk Mendeteksi Obyek Menggunaka Pengolahan Warna Model Normalisasi RGB.
Ming Zhing, L. Rong-Yan, & W. Lei.2003. Adaptive Watermark Scheme with RBF Neural Networks. International Conference on Neural Networks and Signal Processing.
Kutter, M. & F. A. P. Petitcolas. 1999. A fair benchmark for image watermarking systems
Electronic Imaging '99. Security and Watermarking of Multimedia Contents, vol. 3657, The International Society for Optical Engineering, Sans Jose, CA, USA
Munir, Rinaldi.2010.Image Watermarking untuk Citra Berwarna dengan Metode Berbasis Korelasi dalam Ranah DCT.Indonesia.Institut Teknologi Bandung.
Noviardi, W. (2008, Mei 21-23). Penyisipan Logo Berbasis Discrete Cosine Transform.
Oktaviani, R. (2013). Operasi Dasar Pengolahan Citra Digital. Jakarta: Komunitas eLearning Ilmu Komputer.
Persada, Bayu Adi.2009.Perbandingan Teknik Penyembunyian Data Dalam Domain Spasial dan Domain Frekuensi pada Image Watermarking.Bandung.Institut Teknologi Bandung.
Prabhishek , S., & Chadha, R. S. (2013). A Survey of Digital Watermarking Techniques, Applications and Attacks. IJEIT.
Pramitarini, Yushintia.2011. Analysis of Delivery Compressed JPEG Image Direct Sequence Spread Spectrum (DS-SS) Technique.Surabaya : Department of Telecommunications PENS ITS
Sangadji, I. M., & Rezeki, R. (2009). Pengukuran Kualitas Citra Terwatermarking. Jakarta : Jurnal Petir Vol. 2 , 47.
Saputra, Y., & Pratiwi, A. (2011). Analisis Perbandingan Kinerja Komputer Metode Fast Fourier Transform (FFT) dan Metode Discrete Cosine Transform untuk Kompresi Citra Pada Aplikasi Kompresi Data.
Shieh, C. S., Huang, H. C., Wang, F. H., & Pan, J. S. (2004). An Embedding Algorithm for Mutiple Watermarks. Journal of Information Science and Engineering.
Sofwan, M., & Gunawan, D. (2013). Analisa Watermarking Menggunakan Transformasi Laguerre.
Tjiharjadi, S., & Sanwill. (2006). Watermarking Citra Digital Menggunakan Teknik Amplitude Modulation. Jurnal Informatika.