Discussion on Communication Simulation Method of Backbone Optical Transmission Network

Author(s):  
Ling he ◽  
Jizhao Yi ◽  
Mingxuan Li ◽  
Qingrui Guo ◽  
Feng Li
1977 ◽  
Vol 99 (1) ◽  
pp. 34-40 ◽  
Author(s):  
R. S. Sidell ◽  
D. N. Wormley

A method is presented for the simulation of fluid networks consisting of uniform distributed elements and lumped dynamic, nonlinear elements. The uniform transmission elements may be lossy and dispersive. General relationships are derived for their terminations in junctions with other elements and/or with dynamic, nonlinear lumped elements. The basic computer simulation method is efficient in terms of computation time and core storage requirements in comparison to direct finite difference methods and may be implemented on a minicomputer. Simulation results are compared with experimental data for a pneumatic transmission line terminated with a nonlinear resistance and for a pneumatic transmission network consisting of three lines of incommensurate lengths.


2014 ◽  
Vol 716-717 ◽  
pp. 1288-1292
Author(s):  
Li Hui

This paper studies a new type of power transmission network and power communication transmission technology. First, the working principle and network topology form of power optical transmission network have been presented in this paper, the power budget of the optical transmission model has been given through the loss of optical system and dispersion limit theory. Then the power transmission network and power communication transmission have been simulated through EPOCHS software simulation software, which based on the design aspects of CP transport port, transport protocol and transmission signal, the simulation parameters has been set according to the transmission mathematical model, and the security and efficiency of power transmission network has been proved through the fault signal diagnosis and signal characteristics of delay and jitter. The result of simulation shows that power transmission network power transmission have shorter delay and less jitter, which provides the reliable theory basis for the development of electric power communication network and complex network.


2013 ◽  
Vol 19 (1) ◽  
pp. 10-15 ◽  
Author(s):  
S.Z.M. Hasan ◽  
V. Kalavally ◽  
R. Parthiban ◽  
T. Win ◽  
M. Premaratne

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