Title :
Synthesis of Asymmetric Flat-Top Birefringent Interleaver Based on Digital Filter Design and Genetic Algorithm
Author :
Pinzon, P.J. ; Vazquez, Carlos ; Perez, I. ; Sanchez Pena, J.M.
Author_Institution :
Dept. de Tecnol. Electron., Univ. Carlos III de Madrid, Leganes, Spain
Abstract :
A flexible and fast synthesis method for designing asymmetric interleavers with flat-top, low dispersion, adjustable isolation, and bandwidths at both outputs is proposed. Interleavers are designed on birefringent technology allowing linear-phase designs. Z-transform properties and digital filter design techniques are used for designing interleavers under a set of specifications. At a second level, a genetic algorithm optimization approach allows improving the interleaver design adjusting the minimum isolation, at both outputs, below -43 dB and the stop bandwidths to specific normalized values of ±0.15 and ±0.3, with zero dispersion at one output. Improvement of the interleaver order and dispersion below ±50 ps/nm at both outputs are also reported.
Keywords :
birefringence; genetic algorithms; optical design techniques; optical fibre filters; Z-transform properties; asymmetric flat-top birefringent interleaver; digital filter design; genetic algorithm; interleaver design; interleaver order; linear phase designs; Azimuth; Dispersion; Finite impulse response filter; Lattices; Optimization; Transfer functions; Interleavers; birefringent plates; fiber optic systems; finite impulse response (FIR) filters; genetic algorithms (GA);
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2012.2235419