Connectivity Revolution: Fiber Optic Network Mapping for Modern Jember

Authors

  • Muhammad Riza Darmawan
  • Martiana Kholila Fadhil Universitas Jember
  • Candra Putri Rizkiyah R. Universitas Jember
  • Dananjaya Endi Pratama Universitas Jember
  • Moh. Erdianto Triputradi Universitas Jember

DOI:

https://doi.org/10.19184/jaei.v10i3.53349

Keywords:

Bit Error Rate, Fiber optic network, Power link budget, Rise time analysis, Signal to Noise Ratio

Abstract

Jember Regency is a popular marine tourism destination with five beaches, each experiencing an increase in the number of visitors each year in Jember Regency. Although these beaches are favorites and increase visitors annually, they require better infrastructure to support tourism activities. The research evaluated the network design using several parameters: power link budget, rise time, Signal to Noise Ratio (SNR), and Bit Error Rate (BER). The result of this study shows that the 39 network paths meet the BER calculation standard of 10-12 and the SNR standard of 21.5 dB.

Downloads

Download data is not yet available.

References

[1] V. Hidayatullah, N. N. Hayati, and W. Kriswardhana, “Simulasi Lalu lintas Akibat Pengembangan Stasiun Jember,” J. Rekayasa Sipil dan Lingkung., vol. 1, no. 02, p. 104, 2017, doi: 10.19184/jrsl.v1i02.5879.
[2] A. Cahyaningrum, “Analisis Potensi Dan Pengembangan Objek Wisata Pantai Berbasis Sistem Informasi Geografis Di Kabupaten Jember,” pp. 1–16, 2022.
[3] R. A. G. Astami and K. D. M. E. Handayeni, “Penentuan Prioritas Pengembangan Infrastruktur Kawasan Wisata Bahari di Desa Sumberejo, Desa Lojejer dan Desa Puger Kulon, Kabupaten Jember Berdasarkan Preferensi Pengunjung dan Masyarakat,” J. Tek. Its, vol. 4, no. 1, pp. 40–45, 2020.
[4] Investigasi, “Polemik Klaim Infrastruktur: Charles Ungkit Balas Budi Dalam Pembangunan Jalan Menuju Wisata Bandealit,” insvestigasi.news, 2024. https://investigasi.news/nasional/jember/polemik-klaim-infrastruktur-charles-ungkit-balas-budi/ (accessed Nov. 15, 2024).
[5] Y. El Archi, B. Benbba, M. Kabil, and L. D. Dávid, “Digital Technologies for Sustainable Tourism Destinations: State of the Art and Research Agenda,” Adm. Sci., vol. 13, no. 8, 2023, doi: 10.3390/admsci13080184.
[6] B. Seetanah, “Telecommunication and tourism development: an island perspective,” Tour. Rev., vol. 74, no. 4, pp. 815–829, 2019, doi: 10.1108/TR-08-2018-0117.
[7] DPU BMSDA, “Survey Kabel Fiber Optik (FO) di ruas jalan sekabupaten jember,” ppid.jemberkab.go.id, 2024. https://ppid.jemberkab.go.id/berita-ppid/detail/survey-kabel-fiber-optik-fo-di-ruas-jalan-sekabupaten-jember (accessed Nov. 15, 2024).
[8] ilham, “Banyak Kabel Semrawut di Jember, PLN Sebut Ulah Provider Internet Memasang Secara Ilegal,” kissfmjember.com, 2023. https://www.kissfmjember.com/2023/11/10/banyak-kabel-semrawut-di-jember-pln-sebut-ulah-provider-internet-memasang-secara-ilegal.html (accessed Nov. 15, 2024).
[9] Firdaus, R. A. I. Asyari, and E. Indarto, “Optical network design for 4G long term evolution distribution network in sleman,” Proc. - 2016 Int. Semin. Appl. Technol. Inf. Commun. ISEMANTIC 2016, pp. 332–335, 2017, doi: 10.1109/ISEMANTIC.2016.7873861.
[10] Eko and Widianto, “Begini Mitigasi Tsunami dan Gempa Megathrust Selatan Jawa,” Mongabay, 2021. https://www.mongabay.co.id/2021/06/17/begini-mitigasi-tsunami-dan-gempa-megathrust-selatan-jawa/ (accessed Nov. 15, 2024).
[11] Aquacomms, “Submarine Cable Map,” submarinecablemap, 2024.
[12] Antara, “Gempa 5,3 M Guncang Jember,” tempo.co, 2021. https://www.tempo.co/politik/gempa-5-3-m-guncang-jember-445232 (accessed Nov. 15, 2024).
[13] Y. Mulyono, “Bupati Jember Berencana Pindahkan Lokasi Pusat Pemerintahan di Tahun 2022,” detiknews, 2021. https://news.detik.com/berita-jawa-timur/d-5694301/bupati-jember-berencana-pindahkan-lokasi-pusat-pemerintahan-di-tahun-2022 (accessed Nov. 15, 2024).
[14] BPS, “Hasil Sensus Penduduk 2020 Kabupaten Jember,” Badan Pus. Stat. Kabupaten Jember, pp. 1–5, 2021, [Online]. Available: https://jemberkab.bps.go.id/pressrelease/2021/01/25/199/hasil-sensus-penduduk-2020-kabupaten-jember.html#:~:text=Dengan luas wilayah 3.293,34,770 jiwa per km2.
[15] ITU, “G.654 : Characteristics of a cut-off shifted single-mode optical fibre and cable,” itu.int. https://www.itu.int/rec/T-REC-G.654/en (accessed Nov. 15, 2024).
[16] Huawei, “Huawei TN55TTX. TTX Specifications,” Huawei, 2018. http://support.huawei.com/ hedex/pages/EDOC100015294031189461/01/EDOC1000152940311 89461/01/resources/help/wdm/ngwdm/hd/tri/ttx/ttx_specification.html (accessed Nov. 15, 2024).
[17] Hamamatsu, “InGaAs APD Photoreceivers,” Hamamatsu, 2019. https://www.hamamatsu.com/us/en/product/optical-sensors/apd/ingaas-apd.html (accessed Nov. 15, 2024).
[18] K.Gerd, Optical Fiber Communication, 3rd ed. New York, NY, USA: Springer-Verlag, 2000.
[19] G.P.Agrawal, OPT 428 Optical Communication Systems. New York, NY, USA: Agrawal Research Group, 2007.
[20] M. R. Darmawan, N. Aini, A. F. S. Admaja, and C. Apriono.et al., “Komodo National Park fiber optic network design and analysis by considering earthquake epicenter,” Matrix J. Manaj. Teknol. dan Inform., vol. 11, no. 3, pp. 162–176, 2021, doi: 10.31940/matrix.v11i3.162-176

Downloads

Published

2024-12-24

Issue

Section

Articles