Pengaruh Starlink terhadap Strategi Business Continuity Plan pada Perusahaan Internet Service Provide di Indonesia
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Abstract
The Business Continuity Plan (BCP) is a vital element in maintaining the operational continuity of Internet Service Providers (ISPs), especially in Indonesia, which faces complex geographical and infrastructural challenges. In this context, the presence of Starlink, a low Earth orbit (LEO) satellite-based internet service provider, presents new opportunities for ISPs to develop more adaptive and resilient BCP strategies in the face of disruptions. This literature study aims to analyze the potential impact of Starlink integration within the BCP framework of Indonesian ISPs, based on a review of various scientific publications, technical reports, and regulatory documents. The study finds that Starlink offers advantages in terms of network recovery speed, coverage of remote areas, and integration flexibility as a backup connectivity solution. However, challenges related to cost, regulations, and cybersecurity must be taken into account in long-term planning. The study recommends a hybrid approach that combines terrestrial infrastructure with satellite connectivity to enhance the effectiveness of BCP for ISPs in Indonesia.
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References
Habir, M. (2024). Starlink’s Entry into Indonesia: More Complementary than Disruptive? ISEAS-Yusof Ishak Institute. https://www.iseas.edu.sg/articles-commentaries/iseas-perspective/2024-63-starlinks-entry-into-indonesia-more-complementary-than-disruptive-by-manggi-habir/
Humdiana. (2012). Perancangan Business Continuity Plan: Studi Kasus pada PT. PAM. Jurnal Informatika dan Bisnis, 1(1), 1–12.
Kareem, F. (2024). The role of low Earth orbit satellites in disaster recovery and business continuity plans. International Journal of Disaster Management, 8(2), 103–116.
Kwik Kian Gie School of Business. (2024). Starlink: Proyek Ambisius Elon Musk untuk Menghubungkan Dunia. https://kwikkiangie.ac.id/starlink-proyek-ambisius-elon-musk/
Ma, J., Lin, H., & Zhao, Y. (2022). Performance evaluation of Starlink for disaster recovery applications. Satellite Communications Technology Journal, 29(4), 132–145.
Ma, S., Chou, Y. C., Zhao, H., Chen, L., Ma, X., & Liu, J. (2022). Network Characteristics of LEO Satellite Constellations: A Starlink-Based Measurement from End Users. arXiv preprint arXiv:2212.13697. https://arxiv.org/abs/2212.13697
Peled, R., Aizikovich, E., Habler, E., Elovici, Y., & Shabtai, A. (2023). Evaluating the Security of Satellite Systems. arXiv preprint arXiv:2312.01330. https://arxiv.org/abs/2312.01330
Sayudha, D. (2024). Regulatory perspectives on foreign satellite operators in Indonesia. Journal of ICT Policy and Governance, 11(2), 90–105.
Sayudha, K. G. (2024). Indonesia’s Starlink Expansion Must Balance Connectivity and Security. East Asia Forum. https://eastasiaforum.org/2024/08/06/indonesias-starlink-expansion-must-balance-connectivity-and-security/
Smailes, J., Salkield, E., Köhler, S., Birnbach, S., & Martinovic, I. (2023). Dishing Out DoS: How to Disable and Secure the Starlink User Terminal. arXiv preprint arXiv:2303.00582. https://arxiv.org/abs/2303.00582
Telkomsat. (2023). Telkomsat Signs MoU with APJII to Accelerate Internet Penetration through LEO Satellite Services. https://www.telkomsat.co.id/en/news/telkomsat-lakukan-mou-dengan-apjii-untuk-percepat-penetrasi-internet-melalui-layanan-satelit-leo-356