Title
Impact Of Gvd On The Performance Of 2-D Wh/Ts Ocdma Systems Using Heterodyne Detection Receiver
Abstract
In this paper, a novel model of Gaussian pulse propagation in optical fiber is proposed to comprehensively analyze the impact of Group Velocity Dispersion (GVD) on the performance of two-dimensional wavelength hopping/time spreading optical code division multiple access (2-D WH/TS OCDMA) systems. In addition, many noise and interferences, including multiple access interference (MAI), optical beating interference (OBI), and receiver's noise are included in the analysis. Besides, we propose to use the heterodyne detection receiver so that the receiver's sensitivity can be improved. Analytical results show that, under the impact of GVD, the number of supportable users is extremely decreased and the maximum transmission length (i.e. the length at which BER <= 10(-9) can be maintained) is remarkably shortened in the case of normal single mode fiber (ITU-T G.652) is used. The main factor that limits the system performance is time skewing. In addition, we show how the impact of GVD is relieved by dispersion-shifted fiber (ITU-T G.653). For example, a system with 32 x 1 Gbit/s users can achieve a maximum transmission length of 111 km when transmitted optical power per bit is -5 dBm.
Year
DOI
Venue
2009
10.1587/transfun.E92.A.1182
IEICE TRANSACTIONS ON FUNDAMENTALS OF ELECTRONICS COMMUNICATIONS AND COMPUTER SCIENCES
Keywords
Field
DocType
two-dimensional optical CDMA (2-D OCDMA), wavelength hopping/time spreading (WH/TS), heterodyne detection receiver, group velocity dispersion (GVD), fiber Bragg gratings (FBGs)
Optical power,Discrete mathematics,Optical fiber,Heterodyne detection,Telecommunications,Optics,Pulse (signal processing),Single-mode optical fiber,Interference (wave propagation),Code division multiple access,Beat (acoustics),Mathematics
Journal
Volume
Issue
ISSN
E92A
4
1745-1337
Citations 
PageRank 
References 
3
0.52
6
Authors
3
Name
Order
Citations
PageRank
Ngoc T. Dang186.43
Anh T. Pham227740.14
Zixue Cheng341152.10