Analisis Perbandingan Enkripsi dan Dekripsi Menggunakan Algoritma Simetris AES dan Hybrid (AES + RSA) Pada File Video

Authors

  • Alam Fahlevi Pranata Universitas Malikussaleh, Indonesia Author
  • Arlin Fajar Saragih Universitas Malikussaleh, Indonesia Author
  • Radika Fikri Universitas Malikussaleh, Indonesia Author
  • Khairiah Rahmadani Universitas Malikussaleh, Indonesia Author
  • Nazwa Putri Aulia Universitas Malikussaleh, Indonesia Author

DOI:

https://doi.org/10.62671/jikum.v2i1.143

Keywords:

Aes, Rsa, Hybrid Encryption, Video Security, Performance Analysis

Abstract

This study compares the performance of video file encryption using the symmetric Advanced Encryption Standard (AES) and a hybrid scheme combining AES with Rivest–Shamir–Adleman (RSA). The research aims to evaluate efficiency and security trade-offs between the two approaches. Experimental tests were conducted on video files of different sizes, measuring encryption time, decryption time, and file size overhead. Results show that AES achieves faster processing, with average encryption time of 0.0773 seconds and decryption time of 0.1097 seconds. In contrast, the hybrid AES–RSA scheme is slower, with encryption time of 0.0854 seconds (10.4% slower) and decryption time of 0.1405 seconds (28.1% slower), due to additional RSA key operations. While AES is more efficient for real-time applications, the hybrid method provides stronger key distribution security These findings highlight the importance of selecting encryption methods based on application requirements.

References

Access, O., Saydahd, S. J., Muhammed, R. K., Hassan, S. A., Aladdin, A. M., & Region, K. (2025). A Comparative Performance Evaluation of Hybrid Encryption Techniques Using ECC , RSA , AES , and ChaCha20 for Secure Data Transmission. 12(2), 157–172.

Akter, R., Khan, A. R., & Rahman, F. (2023). RSA and AES based hybrid encryption technique for enhancing data security in cloud computing. Journal of Cloud Computing, 3, 60–71. https://doi.org/10.37394/232028.2023.3.8

Al-Dulaimi, A., & Al-Janabi, S. (2021). Efficient video encryption using AES algorithm. International Journal of Computer Applications, 174(12), 15–20.

Diffie, W., & Hellman, M. (1976). New directions in cryptography. IEEE Transactions on Information Theory, 22(6), 644–654.

Ilham, D. N., Hardisal, H., Balkhaya, B., Candra, R. A., & Sipahutar, E. (2019). Heart Rate Monitoring and Stimulation with the Internet of Thing-Based (IoT) Alquran Recitation. SinkrOn, 4(1), 221. https://doi.org/10.33395/sinkron.v4i1.10392

Ilham, D. N., Satria, E., Anugreni, F., Candra, R. A., & Kusumo, H. N. R. A. (2021). Rain Monitoring System for Nutmeg Drying Based on Internet of Things. Journal of Computer Networks, Architecture, and High-Performance Computing, 3(1), 52–57. https://doi.org/10.47709/cnahpc.v3i1.933

Kester, Q. A. (2019). A hybrid cryptosystem based on AES and RSA for secure data transmission. Journal of Information Security, 10(2), 77–85.

Kumar, M., & Pandey, S. (2020). Performance analysis of AES, RSA and hybrid encryption for secure data communication. International Journal of Computer Science and Network Security, 20(4), 89–95.

Maharana, S., Patra, P., & Nayak, S. (2024). Comparative performance analysis of symmetric and asymmetric encryption algorithms for multimedia data. Journal of Information Security and Applications, 74, 103–118.

Mahesh, V., & Batta, B. (2023). " RSA-AES Hybrid Encryption : Combining The Strengths Of Two Powerful Algorithms For Enhanced Security ". 10(2), 992–998.

Mahesh, V., & Batta, B. (2023). RSA–AES hybrid encryption: Combining the strengths of two powerful algorithms for enhanced security. International Journal of Advanced Computer Science and Applications, 10(2), 992–998.

National Institute of Standards and Technology. (2001). Announcing the Advanced Encryption Standard (AES) (FIPS PUB 197). NIST.

Rivest, R. L., Shamir, A., & Adleman, L. (1978). A method for obtaining digital signatures and public-key cryptosystems. Communications of the ACM, 21(2), 120–126 Security in Cloud Computing 2 Related Works and Significance of 3, 60–71. https://doi.org/10.37394/232028.2023.3.8

Saydahd, S. J., Muhammed, R. K., Hassan, S. A., & Aladdin, A. M. (2025). A comparative performance evaluation of hybrid encryption techniques using ECC, RSA, AES, and ChaCha20 for secure data transmission. Open Access Journal of Cryptography, 12(2), 157–172.

Singh, G., & Supriya, K. (2022). Hybrid encryption technique using AES and RSA for secure multimedia data. Journal of Information Security and Applications, 65, 103–110.

Stallings, W. (2017). Cryptography and network security: Principles and practice (7th ed.). Pearson Education.

Sukiman, TSA, Zulfia, A., Karima, A., Ulya, A., & Rizky, MM (2025). Simulasi enkripsi teks berbasis situs web dengan sandi Hill . Brilliance: Penelitian Kecerdasan Buatan , 5(2), 806–810. https://doi.org/10.47709/brilliance.v5i2.5757

Sukiman, TSA, Zulfia, A., Karima, A., Ulya, A., & Rizky, MM (2025). Simulasi enkripsi teks berbasis website dengan Hill Cipher .Brilliance: Penelitian Kecerdasan Buatan , 5(2), 806–810. https://doi.org/10.47709/brilliance.v5i2.5757

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Published

2026-01-03