Research on Adaptive Reverse Design Method of Integrated Optical Fiber Communication System

Authors

  • Chaoyue Chen

DOI:

https://doi.org/10.62051/ndem1f81

Keywords:

Optical Fiber Communication; Adaptive; Reverse Design.

Abstract

The vigorous development of network technology promotes the progress of communication transmission technology, and the progress of communication transmission technology also drives the development of network technology. Optical fiber communication technology is widely used in communication industry because of its strong anti-interference ability, fast transmission speed and large amount of information. With the explosive growth of network data traffic in recent years, the transmission capacity of optical fiber communication has been continuously improved, coherent optical communication technology has developed rapidly, the trend of intelligence, grouping and broadband has become more and more obvious, and new photoelectric devices have been continuously developed and used. Optical fiber communication technology is undergoing tremendous changes and will become more important. In this paper, the application of optical fiber communication transmission technology is discussed in detail, and an adaptive reverse design method of integrated optical fiber communication system is proposed in order to promote the rapid development of optical fiber communication transmission technology.

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References

Guanghui D, Nan L, Chunyan S, et al. Exploration of Optical Fiber Communication Curriculum Teaching Reform based on Reverse Design[J]. Guangdong Chemical Industry, 2018, 18(4):95-96.

Konyshev, V. A. Nanii, O. E. Novikov, A. G. Treshchikov, V. N. Ubaydullaev, R. R. Design principles for modern fibre-optic communication lines[J]. Quantum electronics, 2019, 49(12):12.

Studies C O. Optical fibre communication - CSEM 513 - Semester 1, 2017/2018[J]. 2017, 46(4):523-536.

Technical University of Mombasa. EIT 4419: OPTIC FIBRE COMMUNICATION SYSTEMS[J]. 2017, 85(3):141-148.

IEC/TR 61282-5-2019, Fibre optic communication system design guidelines- Part 5: Accommodation and compensation of chromatic dispersion (Edition 2.0) [S].

Karanov B. End-to-End Deep Learning in Optical Fibre Communication Systems[C]//UCL (University College London).2020, 48(1):142-152.

Praveena M V I V R. Design of Wireless Passive Optical Communication Network Based on Fusion of Fibre to the Home Architecture [J]. Wireless personal communications: An Internaional Journal, 2017, 96(3):22.

Semrau D F. Physical Layer Modelling of Optical Fibre Communication Systems in the Nonlinear Regime[C]//UCL (University College London).2020, 86(2):12.

David B. Frequency of the fibre-optic communication based on coding-transfer light: EP15894851[P]. EP3308478 A4 [2023-07-19].

Das A, Swain N, Panigrahy M. Optical Fibre and its use in Communication Systems[J]. 2016, 11(5): e0155610.

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Published

12-10-2023

How to Cite

Chen, C. (2023) “Research on Adaptive Reverse Design Method of Integrated Optical Fiber Communication System”, Transactions on Computer Science and Intelligent Systems Research, 1, pp. 1–6. doi:10.62051/ndem1f81.