Simulation design and analysis of re modulation structure based on optical network

Authors

  • Yuyan Shang
  • Chuanwu Zhang

DOI:

https://doi.org/10.54097/fcis.v3i1.6023

Keywords:

Optical network, WDM, OTDM, Opti system

Abstract

With the development of information age, the optical fiber communication network has also been greatly developed, and a large number of optical fiber systems should be shipped. Wavelength division multiplexing technology has become the most important technology in optical communication, which has a strong practical significance. The aim of this paper is to design and analyze the digital optical communication system by using the optical system. Using the most suitable configuration, including the optical transmission system at 1310nm and 1550nm wavelength as input power, using single-mode and multi-mode fiber as transmission, using zeroing code and non-zeroing code for modulation and demodulation system to code information, so as to maximize the spectral efficiency of the whole system. There are three evaluation indexes, including signal output power, signal noise spectrum, and transmission rate of two kinds of optical fiber.

Downloads

Download data is not yet available.

References

Long Jin. Analysis on the Development Trend of Communication Technology [D], 2012.

http://www.chyxx.com201708/546144.html

Yu Xiaoshan, Gu Huaxi, et al. Cloud computing data center optical network Research status and trends [J]. Journal of Computer Science, 2015, 38(10): 1924-1945.

Liu Guohui. Principle and technology of optical transport network [M]. Beijing Posts and Telecommunications Press , 2004.

Hui Zhanqiang, Zhang Jianguo. All-optical non-return-to-zero (NRZ) to return-to-zero (RZ) code conversion technology research progress [D]., 2012.

Wu Deming. Principle and technology of optical fiber communication [M]. Beijing Science Press, 2004.

Li Jinjin. Multi-layer and multi-domain optical network based PCE Architecture and Routing Optimization Algorithm [D]. Beijing University of Posts and Telecommunications Press , 2011.

Wei Leping. Development and Progress of Optical Communication System Technology [D]., 2002.

Zhao Jijun, Wang Lirong. Multiple Physical Layer Model in Transparent Optical Network [J]. Optical communication technology, 2011 (001): 14-17.

Liu Xueyuan, Lin Mianfeng, et al. Transparency of WDM [J]. The world of communications ,2000,(7):38-40.

CARDILLO R, CURRI V, MELLIA M. Considering transmission impairments in wavelength routed networks [J].2005,(2)421-429.

BERTHOLD J, SALEH A, BLAIR L, et al. Optical networking: past, present,and future[J]. Journal of Lightwave Technology , 2008, 26(9):1104-1118.

AZODOLMOLKY S, KLINKOWSKI M, MARIN E, et al. A survey on physical layer impairments aware routing and wavelength assignment algorithms in opticalnetworks [J]. Computer Networks, 2009, 53(7): 926-944.

Tang Zhijun, Xi Zaifang, et al. Application of Optisystem in optical fiber communication practice teaching. 2015.

Meng Bin, Li Xin, Huang Ye. Based on Simulation of Optisystem WDM-Pon [J]. China's e-commerce situation · Communication Market, 2013, (6): 21-25.

Mo Lingyu, Dong Yi, et al. Modulation format pair remodulation Impact of WDM-Pon System Performance [D]., 2008.

Guo Yamin, Zhang Xuping, et al. Research on Optical Signal Characteristics and Detection Scheme of Gigabit Passive Optical Network [D]., 2011.

Zhang Manjun. A brief analysis Remodulation of WDM-Pon [J]. Software, 2012, 33(7): 111-113.

Zhang Hongbin, Qiu Kun, Zhou Dong. Wavelength division multiplexing optical fiber communication technology [J]. Journal of University of Electronic Science and Technology, 2000, 29(4): 337-341.

Yang Yongjun, Chen Fushen. Metropolitan area Key components of CWDM system. Journal of University of Electronic Science and Technology, 2003, 32(3).

Downloads

Published

17-03-2023

Issue

Section

Articles

How to Cite

Shang, Y., & Zhang, C. (2023). Simulation design and analysis of re modulation structure based on optical network. Frontiers in Computing and Intelligent Systems, 3(1), 48-55. https://doi.org/10.54097/fcis.v3i1.6023