Implementasi Teknik Hibrida Enkripsi Aes Dan Steganografi Multi-Platform Pada Aplikasi Berbasis Web 'Steganoid'
DOI:
https://doi.org/10.62671/jikum.v2i2.212Keywords:
Steganografi, Advanced Encryption Standard, Least Significant Bit, Keamanan Web, Kriptografi, Privasi DataAbstract
In the era of massive digital information exchange, data security has evolved from mere encryption to the need for confidentiality regarding the existence of the data itself. This research report presents an in-depth analysis, design, and evaluation of SteganoID, a web-based steganography application developed to fulfill the requirements of the Cryptography and Steganography course at Universitas Malikussaleh (UNIMAL). The application integrates the Advanced Encryption Standard (AES) cryptographic algorithm with Least Significant Bit (LSB) steganography techniques and file structure modifications for image, audio, and PDF document media. This study explores the effectiveness of a hybrid approach in securing the text message "UNIMAL HEBAT" within the xrank.pdf file, as demonstrated in system testing. By leveraging client-side processing capabilities through modern JavaScript and HTML5 APIs, SteganoID offers a portable security solution without requiring software installation, mitigating privacy risks associated with server-side processing. This report comprehensively outlines the theoretical foundation, system architecture, interface implementation, and analysis of robustness against steganalysis attacks.
References
Al-Mousa, M. R., Asassfeh, M., Samara, G., Albilasi, S. M., Odeh, M., Laila, D.A.
Al-mashagbeh, M. H., & AlQawasmi, K. (2025). Review the challenges associated with steganography using artificial intelligence techniques. 1st International Conference on Computational Intelligence Approaches and Applications (ICCIAA).
Alarood, A. A., Alghamdi, A. M., Alzahrani, A. O., Alzahrani, A., & Alsolami, E.(2022).
Audio steganography method using least significant bit (LSB) encoding technique. International Journal of Computer Science and Network Security, 22(7), 427–433.
Carvalho, M., Sá, F., & Bernardino, J. (2025). Evaluation of the impact of AES encryption on query read performance across Oracle, MySQL, and SQL Server databases. Cryptography, 9(4), 77.
Chinedu, P. U., Emiri, O. T., Iwedike, O. J., Abah, E. J., Alero, E. M., Ogbimi, E.F.,
Oghorodi, D., & Nwankwo, W. (2024). A secure web-based real-time messenger using AES-RSA encryption. Delta Journal of Computing, Communications & Media Technologies, 1, 13–26.
CISA. (2024). Transition to Advanced Encryption Standard (AES). Cybersecurity and Infrastructure Security Agency.
Demircan, Y. Y., & Ozekes, S. (2024). A novel LSB steganography technique using image segmentation. Journal of Universal Computer Science, 30(3), 308–332.
Driss, M., Berriche, L., Atitallah, S. B., & Rekik, S. (2025). Steganography in IoT: A comprehensive survey on approaches, challenges, and future directions. IEEE Access, 13, 74844–74873.
Eigenschink, P. (2019). Steganography.js: Client-side steganography in the browser. GitHub Repository. https://github.com/petereigenschink/steganography.js
Luo, W., Wei, K., Li, Q., Ye, M., Tan, S., Tang, W., & Huang, J. (2024). A comprehensive survey of digital image steganography and steganalysis. APSIPA Transactions on Signal and Information Processing, 13, e30.
National Institute of Standards and Technology. (2001). Advanced encryption standard (AES) (FIPS Pub 197). U.S. Department of Commerce.
Rawat, D., & Bhandari, V. (2013). A steganography technique for hiding image in an image using LSB method for 24 bit color image. International Journal of Computer Applications, 64(20).
Tyagi, S., Dwivedi, R. K., & Saxena, A. K. (2019). A high capacity PDF text steganography technique based on hashing using quadratic probing. International Journal of Intelligent Engineering and Systems, 12(3), 192–201.



