DocumentCode :
647063
Title :
An efficient split-step optical fiber simulation package with global simulation accuracy control
Author :
Qun Zhang ; Shrestha, Sanjeeb ; Rashid, Rasber ; Karri, Santoshreddy ; Khaliq, Muhammad
Author_Institution :
Dept. of Electr. & Comput. Eng., Minnesota State Univ., Mankato, MN, USA
fYear :
2013
fDate :
12-14 Aug. 2013
Firstpage :
158
Lastpage :
164
Abstract :
A symmetric split-step Fourier (SSSF) simulation model with global simulation accuracy control was developed so that the prescribed global simulation accuracy can be automatically achieved for the waveform level simulation of optical signal propagation through a single mode fiber. Combined with the novel control of the one-step or local simulation error, tens of times of enhancement in the computational efficiency can be achieved, compared to SSSF simulation method without step-size control. With new findings from the optimization of the scaling factor of the local error bound for the dispersion compensation fiber (DCF), the simulation package can significantly speed up the time-consuming simulations which are typical in coherent optical fiber communication system design for systems with inline DCF.
Keywords :
optical fibre communication; optical signal detection; optimisation; software packages; coherent optical fiber communication system design; dispersion compensation fiber; global simulation accuracy control; local error bound; optical signal propagation; single mode fiber; split step optical fiber simulation package; step size control; symmetric split step Fourier simulation model; waveform level simulation; Accuracy; Computational modeling; Optical fiber communication; Optical fiber dispersion; Optical fibers; Wavelength division multiplexing; computer simulation software package; nonlinear Schrödinger equation (NLSE); optical fiber communications; split-step Fourier (SSF) method;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications in China (ICCC), 2013 IEEE/CIC International Conference on
Conference_Location :
Xi´an
Type :
conf
DOI :
10.1109/ICCChina.2013.6671107
Filename :
6671107
Link To Document :
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