ANALISIS PERFORMA DAN KEAMANAN SISTEM BACKUP DAN RESTORE PADA PRIVATE CLOUD BERBASIS CASAOS DI LINGKUNGAN VIRTUAL
DOI:
https://doi.org/10.64626/jukomtek.v5i2.681Kata Kunci:
Private Cloud, CasaOS, Containerization, Data Security, ThroughputAbstrak
Data loss caused by system failures and cyber threats requires a reliable data protection strategy for private cloud environments. This study aims to analyze the performance and security of a backup and restore system using Duplicati on a CasaOS-based private cloud in a virtual environment. An experimental method was employed by implementing CasaOS on Ubuntu Server running in VirtualBox, deploying Duplicati through Docker, resolving container network isolation, volume mapping, and privilege issues, and evaluating the performance of backup and restore processes using a 1.23 GB dataset. The results show that the proposed configuration successfully resolved network and permission constraints, enabling reliable backup and restore operations. The full backup process achieved an average throughput of 20.22 MB/s, while the incremental backup reached 87.42 MB/s, and the restore process was completed successfully without access failures. In conclusion, the integration of CasaOS, Docker, and Duplicati provides a secure, stable, and cost-effective backup and restore solution suitable for small- and medium-scale private cloud deployments.
Referensi
Environment (Promox VE) Untuk Kebutuhan Server. 17(01), 75–88.
Daemen, J., & Rijmen, V. (2002). The Design of Rijndael. New York, 255. http://portal.acm.org/citation.cfm?id=560131
Dilan Gomas, A. S., & Rathnayake, R. M. N. B. (2026). Optimizing Recovery Objectives (RTO and RPO) in Secure Linux NAS Environments: A Design Science Approach to Ransomware Resilience. Asian Journal of Social Science and Management Technology, 8(1), 82–94. https://www.ajssmt.com/Papers/8018294.pdf
DYMORA, P., & MAZUREK, M. (2025). Performance Evaluation of Selected Containerization Methods in Web Services Applications. Journal of Education, Technology and Computer Science, 6(36), 173–185. https://doi.org/10.15584/jetacomps.2025.6.16
Kavitha, R., Shaik, M. S., Swarnalatha, N., Pujitha, M., Hussaini, S. A., Khan, S., & Ali, S. (2025). Data Deduplication-based Efficient Cloud Optimisation Technique: Optimizing Cloud Storage through Data Deduplication. International Journal of Information Engineering and Electronic Business, 17(2), 129–146. https://doi.org/10.5815/ijieeb.2025.02.07
Madhavapeddy, A., Scott, D. J., Ferris, P., Gibb, R. T., & Gazagnaire, T. (2025). Functional Networking for Millions of Docker Desktops (Experience Report). Proceedings of the ACM on Programming Languages, 9(ICFP). https://doi.org/10.1145/3747525
Mallick, B., Parida, P., Prasad, B., Nayak, C., Panda, M. K., Ali, N., & Kumar, N. M. (2026). Quantum-Secure Communication for Future Cyber-Physical and IoT Systems: A Systematic Review of Classical to Learning Approaches. Computers, 15(6), 1–23. https://doi.org/10.3390/computers15060389
Mell, P., & Grance, T. (2012). The NIST definition of cloud computing: Recommendations of the National Institute of Standards and Technology. Public Cloud Computing: Security and Privacy Guidelines, 97–101.
Merkel, D. (2014). Docker : Lightweight Linux Containers for Consistent Development and Deployment Docker : a Little Background Under the Hood. Linux Journal, 2014(239), 2–7. http://delivery.acm.org.ezproxy.library.wisc.edu/10.1145/2610000/2600241/11600.html?ip=128.104.46.196&id=2600241&acc=ACTIVE SERVICE&key=066E7B0AFE2DCD37.066E7B0AFE2DCD37.4D4702B0C3E38B35.4D4702B0C3E38B35&__acm__=1557803890_216b4a0168a6b29b8f2e7a74
Mohammed Maaz, Md Akif Ahmed, Md Maqsood, & Dr Shridevi Soma. (2023). Development Of Service Deployment Models In Private Cloud. Journal of Scientific Research and Technology, (9), 1–12. https://doi.org/10.61808/jsrt74
Rido, R., Pahlevi, M. R., Maliki, I., & Iqbal, M. (2026). Implementasi Server Virtualisasi Menggunakan Proxmox untuk Manajemen Infrastruktur Jaringan dan Layanan Internet pada Institusi Pendidikan. Jurnal Sistem Informasi, Sains Data, Dan Informatika, 1(1), 25–33. https://doi.org/10.56956/s6zv7r91
Surya, J., Louis, A., Rini, F., Mulyati, S., & Elzas, E. (2025). Cryptographic Framework for Cloud-Based Document Storage Using Aes-256 and Sha-256 Hybrid Systems. JITK (Jurnal Ilmu Pengetahuan Dan Teknologi Komputer), 11(2), 535–549. https://doi.org/10.33480/jitk.v11i2.7132
Wahid, W. N., Nurdianingsih, F., & Parker, J. (2026). Comparative Analysis of Cloud Storage Architectures for Scalability and Security. Blockchain Frontier Technology (B-Front), 5(2), 183–193. http://10.0.134.2/bfront.v5i2.857
Yang, P., Xiong, N., & Ren, J. (2020). Data Security and Privacy Protection for Cloud Storage: A Survey. IEEE Access, 8, 131723–131740. https://doi.org/10.1109/ACCESS.2020.3009876
Unduhan
Diterbitkan
Cara Mengutip
Terbitan
Bagian
Lisensi
Hak Cipta (c) 2026 Jurnal Komputer dan Teknologi

Artikel ini berlisensi Creative Commons Attribution-NonCommercial 4.0 International License.












