Analisis Redaman Kabel Fiber Optic Patchcord Single Core

Authors

  • Juwari Juwari Universitas PGRI Madiun
  • Puguh Jayadi Universitas PGRI Madiun
  • Kelik Sussolaikah Universitas PGRI Madiun

DOI:

https://doi.org/10.30865/jurikom.v9i2.3950

Keywords:

Attenuation Analysis, fiber Optic, Attenuation value, single core, Patchcord

Abstract

Fiber Optic attenuation value affects the quality of data transmission. The fiber optic attenuation value can be greater or lower than the standard value. The attenuation value can affect the amount of data transmission sent and received. The attenuation value of single core fiber optic is influenced by various things, one of which is the treatment of the cable itself. Treating the cable by bending and coiling can also affect the damping value. To avoid the high attenuation value of fiber Optic when rolled by doing the rolling process carefully and not twisting during the installation process. The commendation scenario uses Fiber Optic Patchcord, the cable length is 5 meters. From the results of the scenario test on the 3 cables used, the highest attenuation value is in cable C with an attenuation value of 5.39 dB. The highest attenuation is in the 15th winding scenario. Meanwhile, from the 3rd test, the lowest attenuation value is found in cable A with an attenuation value of 1.76 dB. The lowest attenuation at the cable position without a given winding scenario. the more rolls the average damping value will increase the value.

References

P. Shanmugapriya and R. Raveena, “Analysis of various types of fiber dispersion for fiber optical communication,†2020 7th Int. Conf. Smart Struct. Syst. ICSSS 2020, 2020, doi: 10.1109/ICSSS49621.2020.9202086.

E. L. Portnov and J. Rabenandrasana, “The Choice of Optical Fiber with the Best Transmission Characteristics,†2020 Syst. Signals Gener. Process. F. Board Commun., 2020, doi: 10.1109/IEEECONF48371.2020.9078619.

S. Bian et al., “High-speed free-space optical card-to-card transmission architecture based on homodyne coherent detection,†ICOCN 2017 - 16th Int. Conf. Opt. Commun. Networks, vol. 2017-Janua, pp. 1–3, 2017, doi: 10.1109/ICOCN.2017.8121582.

R. Huang et al., “Wideband multimode fiber for high speed short wavelength division multiplexing system,†2017 Opto-Electronics Commun. Conf. OECC 2017 Photonics Glob. Conf. PGC 2017, vol. 2017-Novem, no. Dmd, pp. 1–3, 2017, doi: 10.1109/OECC.2017.8115013.

I. S. Ignatikov, I. A. Ovchinnikova, I. B. Peshkov, E. Y. Gecha, and V. N. Gordienko, “About Radiation Resistance of Optical Cables and Fibers,†2019 Syst. Signals Gener. Process. F. Board Commun. SOSG 2019, pp. 1–4, 2019, doi: 10.1109/SOSG.2019.8706785.

L. Zhang et al., “Nonlinearity tolerant high-speed dmt transmission with 1.5-μm single-mode VCSEL and multi-core fibers for optical interconnects,†J. Light. Technol., vol. 37, no. 2, pp. 380–388, 2019, doi: 10.1109/JLT.2018.2851746.

C. Zhang, S. Liu, Y. Wang, J. Liu, H. Wang, and Z. Li, “High-speed identical weak fiber Bragg grating interrogation system using DFB laser,†25th Int. Conf. Opt. Fiber Sensors, vol. 10323, p. 103236K, 2017, doi: 10.1117/12.2263548.

P. Pinot and Z. Silvestri, “Optical power meter using radiation pressure measurement,†Meas. J. Int. Meas. Confed., vol. 131, no. July, pp. 109–119, 2019, doi: 10.1016/j.measurement.2018.07.087.

E. K. Wadhana and H. Setijono, “Komunikasi Serat Optik Menggunakan Metode Optical Link POWER LINK BUDGET,†J. Tek. Fis. akultas Teknol. Ind. ITS, pp. 1–11, 2010.

S. R. Bickham, M. A. Marro, J. A. Derick, W. L. Kuang, X. Feng, and Y. Hua, “Reduced Cladding Diameter Fibers for High-Density Optical Interconnects,†J. Light. Technol., vol. 38, no. 2, pp. 297–302, 2020, doi: 10.1109/JLT.2019.2939547.

H. N. R. A. K and N. W. K, “Analisis Redaman Pada Sistem Fiber Optic Akibat Adanya Penambahan ST-Adapter,†no. November 2019, pp. 308–314.

I. Umaternate and Z. Mabud, “Analisis Redaman Serat Terhadap Kinerja Sistem Komunikasi Serat Optik dengan Metode Power Link Budget pada Link Sofifi-Jailolo di PT.Telkom Sofifi,†J. PROtek, vol. 04, no. 1, pp. 20–29, 2017.

S. Arisya, Waluyo, and H. Darmono, “ANALISIS RUGI-RUGI MACROBENDING PADA CORE SERAT OPTIK Program Studi Jaringan Telekomunikasi Digital ~ Politeknik Negeri Malang Program Studi Jaringan Telekomunikasi Digital ~ Politeknik Negeri Malang,†pp. 11–16, 2019.

Y. Liu et al., “High-Speed Performance Evaluation of Graded-Index Multicore Fiber Compatible with Multimode and Quasi-single Mode Operation,†J. Light. Technol., vol. 38, no. 24, pp. 6870–6878, 2020, doi: 10.1109/JLT.2020.3019645.

T. H. Yanuary and L. Lidyawati, “Analisis Link Budget Penyambungan Serat Optik Menggunakan Optical Time Domain Reflectometer AQ7275,†J. Tek. Elektro, vol. 10, no. 1, pp. 36–40, 2018, doi: 10.15294/jte.v10i1.13996.

K. Yao, Y. Chen, A. Ashfaq, G. Sun, and Y. Guo, “Power loss due to temperature rise in the optical unit of optical fiber composite low voltage cable,†Proc. IEEE Int. Conf. Prop. Appl. Dielectr. Mater., vol. 2018-May, pp. 508–511, 2018, doi: 10.1109/ICPADM.2018.8401039.

A. Ali et al., “Underwater wireless-to-plastic optical fiber communication systems with a passive front end,†2019 18th Int. Conf. Opt. Commun. Networks, ICOCN 2019, pp. 1–3, 2019, doi: 10.1109/ICOCN.2019.8934143.

J. Crisp and B. Elliott, “Introduction to Fiber Optics,†Introd. to Fiber Opt., 2005, doi: 10.1016/B978-0-7506-6756-2.X5000-5.

K. V. K. K. Prasad, Principles Of Digital Communication System & Computer Network, vol. 2003. 2003.

K. B. Bradley, A. E. Hauth, R. J. Lingle, P. Wang, and I. C. White, “Characterizing fiber patchcord bending effects,†Opt. InfoBase Conf. Pap., no. 770, 2006, doi: 10.1109/ofc.2006.215919.

P. Williams et al., “Portable, high-accuracy, non-absorbing laser power measurement at kilowatt levels by means of radiation pressure,†Opt. Express, vol. 25, no. 4, p. 4382, 2017, doi: 10.1364/oe.25.004382.

Additional Files

Published

2022-04-29

How to Cite

Juwari, J., Jayadi, P., & Sussolaikah, K. (2022). Analisis Redaman Kabel Fiber Optic Patchcord Single Core. JURNAL RISET KOMPUTER (JURIKOM), 9(2), 202–210. https://doi.org/10.30865/jurikom.v9i2.3950

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Articles