Research Article
BibTex RIS Cite

Comparative Analysis of Transaction Performance in Different Virtualization Environments

Year 2024, , 176 - 187, 31.12.2024
https://doi.org/10.26650/acin.1462076

Abstract

Virtualization technologies are increasing in importance day by day. The selection of virtualization software is an important factor to realize efficient use of physical hardware. In this study, the Ubuntu 22.04 LTS operating system was run on Virtu alBox, VMware, and Docker, which are widely used virtualization software. Then, the Tiobench, Compress-7zip, C-ray, Smallpt, Tachyon, and OSBench tests were per formed on the Ubuntu operating system with the Phoronix Test Suite software, and the test results were analyzed and compared. The results demonstrate that Docker out performed the other virtualization technologies, although not in every test. Owing to its rapid deployment and efficient use of resources, Docker is suitable for applications that require agility and scalability. However, traditional virtualization technologies, such as VMware, maybemoresuitable for applications that require high security and extensive resource management. In addition, this study provides information that can guide users in selecting virtualization software.

References

  • Ayaz, Ö., Aydın, G. (2016), Uygulama Sanallaştırmada Yeni Bir Yaklaşım: Docker. Retrieved from https://ab.org.tr/ab15/bildiri/312. google scholar
  • Brady, K., Moon, S., Nguyen, T., Coffman, J. (2020), Docker Container Security in Cloud Computing, 2020 10th Annual Computing and Communication Workshop and Conference (CCWC), doi: 10.1109/CCWC47524.2020.9031195 google scholar
  • Benchmark Tests: https://openbenchmarking.org/tests, 01.01. 2024. google scholar
  • Ferrari, D. (1972). Workload characterization and selection in computer performance measurement. Computer 5: 18-24. google scholar
  • Gupta, A., Bansal, A. and Khanduja, V. (2017), Modern lossless compression techniques: Review, comparison and analysis, 2017 Second International Conference on Electrical, Computer and Communication Technologies (ICECCT), Coimbatore, India, pp. 1-8. google scholar
  • Gurjar, D. and S. S. Kumbhar, (2019) A Review on Performance Analysis of ZFS & BTRFS, 2019 International Conference on Communication and Signal Processing (ICCSP), Chennai, India, pp. 0073-0076, doi: 10.1109/ICCSP.2019.8698103. google scholar
  • Kaiser, S., Haq, M.S., Tosun, A.S., & Korkmaz, T. (2022). Container technologies for ARM Architecture: A Comprehensive Survey of the State-of-the-Art, IEEE Access, 10, 84853-84881. google scholar
  • Mongia, V., Sharma, A. (2020 July-August), Performance Comparison of Virtual Machine Selection Policies in Cloud Environment, International Journal of Advanced Trends in Computer Science and Engineering, Volume 9, No.4. google scholar
  • Natawiguna, A., & InggrianiLiem, M. M. (2016), Virtualization Methods for Securing Online Exam, 2016 International Conference on Data and Software Engineering (ICoDSE), Denpasar, Indonesia, pp. 1-7. google scholar
  • Pahl, C., Brogi, A., Soldani, J., & Jamshidi, P. (2017). Cloud container technologies: A State-of-the-art review. IEEE Transactions on Cloud Computing, 7, 677-692. google scholar
  • Patil, S. (2021 May), Study of container technology with docker. International Journal of Advanced Research in Science Communication and Technology. google scholar
  • Perez, R., vanDoorn, L., & Sailer, R. (2008 November). Virtualization and hardware-based security. IEEE Security and Privacy Magazine 6(5):24-31 google scholar
  • Potdar, A.M., Naraya, D. G., Kengond, S., Mulla, M.M. (2020), Performance Evaluation of Docker Container and Virtual Machine, Procedia Computer Science, 171, 1419-1428. google scholar
  • Reis, D., Piedade, B., Correia, F. F., Dias, J. P., & Aguiar, A., (2022). Developing Docker and Docker-Compose Specifications: A Developers’ Survey. IEEE Access, vol. 10, pp. 2318-2329. google scholar
  • Robbi, F. A. A., A. B, Prasetijo, and E. D., Widianto ED (2019 January), Perbandingan Kinerja Block Storage Ceph dan ZFS di Lingkungan Virtual, Jurnal Teknologi dan Sistem Komputer, vol. 7, no. 1, pp. 7-11. google scholar
  • Schlosser, D., Duelli, M., & Goll, S. (2011). Performance comparison of hardware virtualization Plaforms, International Conference on Research in Networking, 393-405. google scholar
  • Sudha, M. (2013), Performance Analysis of Kernel-Based Virtual Machine, International Journal of Computer Science and Information Tech-nology. google scholar
  • Syauqi, M. R., Sabrina, N. P., Santikarama, I. (2023), K-Means Clustering with KNN and mean computation on CPU Benchmark Compilation Data, Journal of Applied Informatics and Computing, 7(2), pp. 231-239. https://doi.org/10.30871/jaic.v7i2.6491 google scholar
  • Unit42 (2022, April 12). I Am Your Defense against Cloud Threats: The Latest Unit 42 Cloud Threat Research. Available online: https: //unit42.paloaltonetworks.com/iam-cloud-threat-research (accessed on 20 July 2024). google scholar
  • Wang, W., (2022), Research on Using Docker Container Technology to Realize Rapid Deployment Environment on Virtual Machine, 2022 8th Annual International Conference on Network and Information Systems for Computers (ICNISC), Hangzhou, China, pp. 541-544. google scholar
  • Wei, S., Zhang, K., & Tu, B. (2019 June). HyperBench: A benchmark suite for virtualization capabilities. Proc. ACM Meas. Anal. Comput. Syst. 3, 2, Article 24, 22 pages. google scholar
  • Yılmaz, E. C., Oktaş, R., & Karabulut, B. (2016). DOCKER İLE WEB UYGULAMASI GELİŞTİRME. Küresel Mühendislik Çalışmaları Dergisi, 3(2), 116-121. google scholar
Year 2024, , 176 - 187, 31.12.2024
https://doi.org/10.26650/acin.1462076

Abstract

References

  • Ayaz, Ö., Aydın, G. (2016), Uygulama Sanallaştırmada Yeni Bir Yaklaşım: Docker. Retrieved from https://ab.org.tr/ab15/bildiri/312. google scholar
  • Brady, K., Moon, S., Nguyen, T., Coffman, J. (2020), Docker Container Security in Cloud Computing, 2020 10th Annual Computing and Communication Workshop and Conference (CCWC), doi: 10.1109/CCWC47524.2020.9031195 google scholar
  • Benchmark Tests: https://openbenchmarking.org/tests, 01.01. 2024. google scholar
  • Ferrari, D. (1972). Workload characterization and selection in computer performance measurement. Computer 5: 18-24. google scholar
  • Gupta, A., Bansal, A. and Khanduja, V. (2017), Modern lossless compression techniques: Review, comparison and analysis, 2017 Second International Conference on Electrical, Computer and Communication Technologies (ICECCT), Coimbatore, India, pp. 1-8. google scholar
  • Gurjar, D. and S. S. Kumbhar, (2019) A Review on Performance Analysis of ZFS & BTRFS, 2019 International Conference on Communication and Signal Processing (ICCSP), Chennai, India, pp. 0073-0076, doi: 10.1109/ICCSP.2019.8698103. google scholar
  • Kaiser, S., Haq, M.S., Tosun, A.S., & Korkmaz, T. (2022). Container technologies for ARM Architecture: A Comprehensive Survey of the State-of-the-Art, IEEE Access, 10, 84853-84881. google scholar
  • Mongia, V., Sharma, A. (2020 July-August), Performance Comparison of Virtual Machine Selection Policies in Cloud Environment, International Journal of Advanced Trends in Computer Science and Engineering, Volume 9, No.4. google scholar
  • Natawiguna, A., & InggrianiLiem, M. M. (2016), Virtualization Methods for Securing Online Exam, 2016 International Conference on Data and Software Engineering (ICoDSE), Denpasar, Indonesia, pp. 1-7. google scholar
  • Pahl, C., Brogi, A., Soldani, J., & Jamshidi, P. (2017). Cloud container technologies: A State-of-the-art review. IEEE Transactions on Cloud Computing, 7, 677-692. google scholar
  • Patil, S. (2021 May), Study of container technology with docker. International Journal of Advanced Research in Science Communication and Technology. google scholar
  • Perez, R., vanDoorn, L., & Sailer, R. (2008 November). Virtualization and hardware-based security. IEEE Security and Privacy Magazine 6(5):24-31 google scholar
  • Potdar, A.M., Naraya, D. G., Kengond, S., Mulla, M.M. (2020), Performance Evaluation of Docker Container and Virtual Machine, Procedia Computer Science, 171, 1419-1428. google scholar
  • Reis, D., Piedade, B., Correia, F. F., Dias, J. P., & Aguiar, A., (2022). Developing Docker and Docker-Compose Specifications: A Developers’ Survey. IEEE Access, vol. 10, pp. 2318-2329. google scholar
  • Robbi, F. A. A., A. B, Prasetijo, and E. D., Widianto ED (2019 January), Perbandingan Kinerja Block Storage Ceph dan ZFS di Lingkungan Virtual, Jurnal Teknologi dan Sistem Komputer, vol. 7, no. 1, pp. 7-11. google scholar
  • Schlosser, D., Duelli, M., & Goll, S. (2011). Performance comparison of hardware virtualization Plaforms, International Conference on Research in Networking, 393-405. google scholar
  • Sudha, M. (2013), Performance Analysis of Kernel-Based Virtual Machine, International Journal of Computer Science and Information Tech-nology. google scholar
  • Syauqi, M. R., Sabrina, N. P., Santikarama, I. (2023), K-Means Clustering with KNN and mean computation on CPU Benchmark Compilation Data, Journal of Applied Informatics and Computing, 7(2), pp. 231-239. https://doi.org/10.30871/jaic.v7i2.6491 google scholar
  • Unit42 (2022, April 12). I Am Your Defense against Cloud Threats: The Latest Unit 42 Cloud Threat Research. Available online: https: //unit42.paloaltonetworks.com/iam-cloud-threat-research (accessed on 20 July 2024). google scholar
  • Wang, W., (2022), Research on Using Docker Container Technology to Realize Rapid Deployment Environment on Virtual Machine, 2022 8th Annual International Conference on Network and Information Systems for Computers (ICNISC), Hangzhou, China, pp. 541-544. google scholar
  • Wei, S., Zhang, K., & Tu, B. (2019 June). HyperBench: A benchmark suite for virtualization capabilities. Proc. ACM Meas. Anal. Comput. Syst. 3, 2, Article 24, 22 pages. google scholar
  • Yılmaz, E. C., Oktaş, R., & Karabulut, B. (2016). DOCKER İLE WEB UYGULAMASI GELİŞTİRME. Küresel Mühendislik Çalışmaları Dergisi, 3(2), 116-121. google scholar
There are 22 citations in total.

Details

Primary Language English
Subjects Operating Systems
Journal Section Research Article
Authors

Ali İhsan Candemir 0009-0001-0167-7879

Nilgün İncereis 0000-0001-5508-8159

Publication Date December 31, 2024
Submission Date April 1, 2024
Acceptance Date November 4, 2024
Published in Issue Year 2024

Cite

APA Candemir, A. İ., & İncereis, N. (2024). Comparative Analysis of Transaction Performance in Different Virtualization Environments. Acta Infologica, 8(2), 176-187. https://doi.org/10.26650/acin.1462076
AMA Candemir Aİ, İncereis N. Comparative Analysis of Transaction Performance in Different Virtualization Environments. ACIN. December 2024;8(2):176-187. doi:10.26650/acin.1462076
Chicago Candemir, Ali İhsan, and Nilgün İncereis. “Comparative Analysis of Transaction Performance in Different Virtualization Environments”. Acta Infologica 8, no. 2 (December 2024): 176-87. https://doi.org/10.26650/acin.1462076.
EndNote Candemir Aİ, İncereis N (December 1, 2024) Comparative Analysis of Transaction Performance in Different Virtualization Environments. Acta Infologica 8 2 176–187.
IEEE A. İ. Candemir and N. İncereis, “Comparative Analysis of Transaction Performance in Different Virtualization Environments”, ACIN, vol. 8, no. 2, pp. 176–187, 2024, doi: 10.26650/acin.1462076.
ISNAD Candemir, Ali İhsan - İncereis, Nilgün. “Comparative Analysis of Transaction Performance in Different Virtualization Environments”. Acta Infologica 8/2 (December 2024), 176-187. https://doi.org/10.26650/acin.1462076.
JAMA Candemir Aİ, İncereis N. Comparative Analysis of Transaction Performance in Different Virtualization Environments. ACIN. 2024;8:176–187.
MLA Candemir, Ali İhsan and Nilgün İncereis. “Comparative Analysis of Transaction Performance in Different Virtualization Environments”. Acta Infologica, vol. 8, no. 2, 2024, pp. 176-87, doi:10.26650/acin.1462076.
Vancouver Candemir Aİ, İncereis N. Comparative Analysis of Transaction Performance in Different Virtualization Environments. ACIN. 2024;8(2):176-87.