A novel chromatic dispersion monitoring method for 1 024 QAM fiber-optic system based on asynchronous amplitude sampling

A new chromatic dispersion(CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0-600 ps/nm. A dual-polarization(DP)-1 024 quadrature amplitude modulation(QAM) 400 Gbit/s CD monitoring system is built using OptiS ystem14.0 software. With different optical signal...

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Published in:Optoelectronics letters Vol. 13; no. 3; pp. 221 - 224
Main Author: 申佳伟 诸波 胡芳仁 陈思嘉 瞿航
Format: Journal Article
Language:English
Published: Tianjin Tianjin University of Technology 01-05-2017
Springer Nature B.V
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Abstract A new chromatic dispersion(CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0-600 ps/nm. A dual-polarization(DP)-1 024 quadrature amplitude modulation(QAM) 400 Gbit/s CD monitoring system is built using OptiS ystem14.0 software. With different optical signal to noise ratio(OSNR) values, different filter bandwidths or different duty cycles, the simulations are carried out. The simulation results show that this new CD monitoring method can be less affected by noise and has a high tolerance for different filter bandwidths. At the same time, this method can do effective CD monitoring on the signal with duty cycle greater than 80%. A high sensitivity in 0-200 ps/nm can be achieved using this CD monitoring method. The technique supports a wide range of data traffic and enhances operation flexibility of optical networks.
AbstractList A new chromatic dispersion (CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0—600 ps/nm. A dual-polarization (DP)-1 024 quadrature amplitude modulation (QAM) 400 Gbit/s CD monitoring system is built using OptiSystem14.0 software. With different optical signal to noise ratio (OSNR) values, different filter bandwidths or different duty cycles, the simulations are carried out. The simulation results show that this new CD monitoring method can be less affected by noise and has a high tolerance for different filter bandwidths. At the same time, this method can do effective CD monitoring on the signal with duty cycle greater than 80%. A high sensitivity in 0—200 ps/nm can be achieved using this CD monitoring method. The technique supports a wide range of data traffic and enhances operation flexibility of optical networks.1
A new chromatic dispersion(CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0-600 ps/nm. A dual-polarization(DP)-1 024 quadrature amplitude modulation(QAM) 400 Gbit/s CD monitoring system is built using OptiS ystem14.0 software. With different optical signal to noise ratio(OSNR) values, different filter bandwidths or different duty cycles, the simulations are carried out. The simulation results show that this new CD monitoring method can be less affected by noise and has a high tolerance for different filter bandwidths. At the same time, this method can do effective CD monitoring on the signal with duty cycle greater than 80%. A high sensitivity in 0-200 ps/nm can be achieved using this CD monitoring method. The technique supports a wide range of data traffic and enhances operation flexibility of optical networks.
Author 申佳伟 诸波 胡芳仁 陈思嘉 瞿航
AuthorAffiliation Department of Optical Information Technology, School of Optoelectronic Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210023, China
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Cites_doi 10.1016/j.optcom.2015.04.060
10.1109/JPHOT.2012.2208265
10.1109/JPHOT.2012.2207451
10.1016/j.optcom.2014.08.008
10.1109/LPT.2012.2209413
10.1109/JLT.2015.2480798
10.1109/LPT.2011.2109944
10.1117/12.2079039
10.1109/JLT.2003.822154
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Notes 12-1370/TN
chromatic quadrature asynchronous OSNR cycle optic traffic seriously ystem modulator
A new chromatic dispersion(CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0-600 ps/nm. A dual-polarization(DP)-1 024 quadrature amplitude modulation(QAM) 400 Gbit/s CD monitoring system is built using OptiS ystem14.0 software. With different optical signal to noise ratio(OSNR) values, different filter bandwidths or different duty cycles, the simulations are carried out. The simulation results show that this new CD monitoring method can be less affected by noise and has a high tolerance for different filter bandwidths. At the same time, this method can do effective CD monitoring on the signal with duty cycle greater than 80%. A high sensitivity in 0-200 ps/nm can be achieved using this CD monitoring method. The technique supports a wide range of data traffic and enhances operation flexibility of optical networks.
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Snippet A new chromatic dispersion(CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0-600 ps/nm. A dual-polarization(DP)-1...
A new chromatic dispersion (CD) monitoring method is proposed, and the CD monitoring is achieved on the whole range of 0—600 ps/nm. A dual-polarization (DP)-1...
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SubjectTerms Bandwidths
Dispersion
Fiber optic communications
Fiber optics
Lasers
Optical communication
Optical Devices
Optical fibers
Optics
Photonics
Physics
Physics and Astronomy
QAM
Quadrature amplitude modulation
Signal monitoring
Signal to noise ratio
仿真结果
光信噪比
光纤色散
异步
正交幅度调制
监测方法
采样
Title A novel chromatic dispersion monitoring method for 1 024 QAM fiber-optic system based on asynchronous amplitude sampling
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