Evaluation of Quality of Service on Megavision Internet Services Provider in Jelekong Village Using Speedtest by Ookla

Authors

  • Muchamad Rusdan Sekolah Tinggi Teknologi Bandung

DOI:

https://doi.org/10.52661/jict.v6i2.345

Keywords:

Internet Services Provider, Jitter, Delay, Quality of Service, Speedtest by Ookla

Abstract

This research aims to test the Quality of Service (QoS) on the internet service provider Megavision in Jelekong Village, Baleendah District, Bandung Regency using Speedtest by Ookla Mobile. Measurement methods include download speed, upload speed, throughput, latency (ping), jitter, and packet loss. The research results show that the Megavision Provider can provide relatively good quality internet services, with an average download speed of 19.10 Mbps, an average upload speed of 19.78 Mbps, average throughput of 38.886 kbps in the "Good" category, average latency of 52.78 ms in the "Very Good" category, average jitter of 17.33 ms in the "Good" category, and average packet loss of 1.25% in the "Very Good" category based on the TIPHON standard. Although performance variations occur, especially during peak hours during the day, the test results generally show the stability and reliability of Provider Megavision's internet service. The results of this research can be used as a basis for carrying out continuous monitoring and improving infrastructure and service quality to provide a more satisfying user experience in Jelekong Village

References

V. Adarsh et al., “Coverage is Not Binary: Quantifying Mobile Broadband Quality in Urban, Rural, and Tribal Contexts,” Proc. - Int. Conf. Comput. Commun. Networks, ICCCN, vol. 2021-July, 2021, doi: 10.1109/ICCCN52240.2021.9522152.

E. Ruth, “Deskripsi Kualitas Layanan Jasa Akses Internet di Indonesia dari Sudut Pandang Penyelenggara,” Bul. Pos dan Telekomun., vol. 11, no. 2, p. 137, 2015, doi: 10.17933/bpostel.2013.110204.

H. A. Aryandi, E. L. Tatuhey, and J. Lahallo, “Analisis Quality Of Service Pada Jaringan Internet Dinas Lingkungan Hidup Dan Kebersihan,” J. Tek. Inform. dan Sist. Inf., vol. 10, no. 4, pp. 291–300, 2023.

M.-R. Fida, M. Roald, E. Acar, and A. Elmokashfi, “Modeling Variation in Mobile Download Speed in Presence of Missing Samples,” IEEE Trans. Mob. Comput., vol. 23, no. 2, pp. 1200–1214, 2024, doi: 10.1109/TMC.2022.3231928.

A. G. Lomi, J. L. D. Bessie, and A. Kasim, “Pengaruh EWOM (Electronic W ord OF Mouth) Pada media sosial Facebook terhadap minat beli konsumen (Studi pada Tebing bar & cafe),” J. Manage., vol. 2, no. 1, pp. 29–58, 2016.

A. Agung, A. Ditia Andriyani, G. Ngurah, and N. Wismantara, “Pengaruh Penggunaan Google Review Terhadap Penilaian Kepuasan Pelanggan Balistung,” J. Pengabdi. Masy. Ilmu Kegur. dan Pendidkan, vol. 6, no. 2, 2023.

R. Sanchez-Arias, L. G. Jaimes, S. Taj, and M. S. Habib, “Understanding the State of Broadband Connectivity: An Analysis of Speedtests and Emerging Technologies,” IEEE Access, vol. 11, pp. 101580–101603, 2023, doi: 10.1109/ACCESS.2023.3313231.

A. A. Akinlabi and F. M. Dahunsi, “Mobile broadband quality of service analysis using host-based performance measurements,” African J. Sci. Technol. Innov. Dev., vol. 14, no. 4, pp. 1083–1101, Jun. 2022, doi: 10.1080/20421338.2021.1936887.

U. Paul, J. Liu, M. Gu, A. Gupta, and E. Belding, “The importance of contextualization of crowdsourced active speed test measurements,” in Proceedings of the 22nd ACM Internet Measurement Conference, 2022, pp. 274–289. doi: 10.1145/3517745.3561441.

K. MacMillan, T. Mangla, J. Saxon, N. P. Marwell, and N. Feamster, “A Comparative Analysis of Ookla Speedtest and Measurement Labs Network Diagnostic Test (NDT7),” Proc. ACM Meas. Anal. Comput. Syst., vol. 7, no. 1, Mar. 2023, doi: 10.1145/3579448.

Z. Zhang, J. Shen, and R. K. P. Mok, “Empirical Characterization of Ookla’s Speed Test Platform: Analyzing Server Deployment, Policy Impact, and User Coverage,” in 2024 IEEE 14th Annual Computing and Communication Workshop and Conference (CCWC), 2024, pp. 630–636. doi: 10.1109/CCWC60891.2024.10427883.

V. Umoh, U. Ekpe, I. Davidson, and J. Akpan, “Mobile Broadband Adoption, Performance Measurements and Methodology: A Review,” Electronics, vol. 12, no. 7. 2023. doi: 10.3390/electronics12071630.

G. A. J. Saskara, I. M. E. Listartha, I. P. S. D. Putra, and K. A. A. Kusuma, “Evaluation of the Quality of the Undiksha Harmoni Network Using the Quality of Service Method,” J. Teknol. dan Inf., vol. 14, no. 1, pp. 50–61, 2024, doi: 10.34010/jati.v14i1.

M. N. R. Allana, N. Hidayati, and K. Khairussalam, “Pengaruh Kualitas Layanan Produk dan Harga Terhadap Kepuasan Pelanggan Pengguna XL di Kota Banjarmasin (Studi Pada Pengguna Paket Data Internet),” Smart Bus. J., vol. 1, no. 2, p. 15, 2022, doi: 10.20527/sbj.v1i2.12793.

M. Rusdan and M. Sabar, “Desain Jaringan Wireless Menggunakan Distribution System (WDS) dan Pengujian Berdasarkan Quality of Service (QoS),” J. Ilm. Teknol. Inf. Terap., vol. 6, no. 1, pp. 23–29, 2019, doi: 10.33197/jitter.vol6.iss1.2019.318.

M. Abdallah, C. Griwodz, K.-T. Chen, G. Simon, P.-C. Wang, and C.-H. Hsu, “Delay-Sensitive Video Computing in the Cloud: A Survey,” ACM Trans. Multimed. Comput. Commun. Appl., vol. 14, no. 3s, Jun. 2018, doi: 10.1145/3212804.

M. Hadi Prayitno and J. Trianto, “Analisis Performa Load Balancing Terhdap Throughput Pada Kluster Server Untuk Mendukung Smart City,” J. Teknoinfo, vol. 18, no. 1, pp. 173–181, 2024.

A. Alzi and H. Haeruddin, “Pengaruh Manajemen Bandwidth Terhadap QoS dengan Standar TIPHON Pada Alur Monitoring SNMP,” J. Ilm. Teknol. Inf. Asia, vol. 17, no. 1, p. 9, 2022, doi: 10.32815/jitika.v17i1.883.

M. Zhang et al., “An Infrastructure Service Recommendation System for Cloud Applications with Real-time QoS Requirement Constraints,” IEEE Syst. J., vol. 11, no. 4, pp. 2960–2970, 2017, doi: 10.1109/JSYST.2015.2427338.

F. Metzger et al., “An Introduction to Online Video Game QoS and QoE Influencing Factors,” IEEE Commun. Surv. Tutorials, vol. 24, no. 3, pp. 1894–1925, 2022, doi: 10.1109/COMST.2022.3177251.

S. El Mattar and A. Baghdad, “Introducing a high-throughput energy-efficient anti-collision (HT-EEAC) protocol for RFID systems,” Int. J. Intell. Networks, vol. 5, pp. 1–9, 2024, doi: https://doi.org/10.1016/j.ijin.2024.01.003.

K. Bouraqia, E. Sabir, M. Sadik, and L. Ladid, “Quality of Experience for Streaming Services: Measurements, Challenges and Insights,” IEEE Access, vol. 8, pp. 13341–13361, 2020, doi: 10.1109/ACCESS.2020.2965099.

A. Dumka, H. L. Mandoria, V. Fore, and K. Dumka, “Implementation of QoS algorithm in integrated services (IntServ) MPLS network,” in 2015 2nd International Conference on Computing for Sustainable Global Development (INDIACom), 2015, pp. 1048–1050.

S. Wahyuningsih et al., Standar Kualitas Layanan Data Pada Jaringan Bergerak Seluler (Mobile Data). Jakarta: Puslitbang Sumber Daya, Perangkat dan Penyelenggaraan Pos dan Informatika, Badan Penelitian dan Pengembangan Sumber Daya Manusia, Kementerian Komunikasi dan Informatika, 2016.

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Published

2025-01-08

How to Cite

Rusdan, M. (2025). Evaluation of Quality of Service on Megavision Internet Services Provider in Jelekong Village Using Speedtest by Ookla. Journal of Informatics and Communication Technology (JICT), 6(2), 80–88. https://doi.org/10.52661/jict.v6i2.345

Issue

Section

Informatika