Title :
Quantum-behaved particle swarm optimization for the synthesis of fibre Bragg gratings filter
Author :
YU, Xuelian ; Sun, Yunxu ; Yao, Yong ; Tian, Jiajun ; Cong, Shan
Author_Institution :
Shenzhen Grad. Sch., Harbin Inst. of Technol., Harbin, China
Abstract :
A method based on the quantum-behaved particle swarm optimization algorithm is presented to design a bandpass filter of the fibre Bragg gratings. In contrast to the other optimization algorithms such as the genetic algorithm and particle swarm optimization algorithm, this method is simpler and easier to implement. To demonstrate the effectiveness of the QPSO algorithm, we consider a bandpass filter. With the parameters the half the bandwidth of the filter 0.05 nm, the Bragg wavelength 1550 nm, the grating length with 2cm is divided into 40 uniform sections and its index modulation is what should be optimized and whole feasible solution space is searched for the index modulation. After the index modulation profile is known for all the sections, the transfer matrix method is used to verify the final optimal index modulation by calculating the reflection spectrum. The results show the group delay is less than 12ps in band and the calculated dispersion is relatively flat inside the passband. It is further found that the reflective spectrum has sidelobes around -30dB and the worst in-band dispersion value is less than 200ps/nm . In addition, for this design, it takes approximately several minutes to find the acceptable index modulation values with a notebook computer.
Keywords :
Bragg gratings; band-pass filters; genetic algorithms; optical design techniques; optical fibre filters; optical modulation; particle swarm optimisation; quantum optics; bandpass filter; fibre Bragg gratings filter; genetic algorithm; group delay; optimal index modulation; quantum-behaved particle swarm optimization; reflection spectrum; transfer matrix; wavelength 1550 nm; Abstracts; Bandwidth; Fiber gratings; Gratings; Indexes; fiber Bragg grating; filter; particle swarm optimization; quantum-behaved particle swarm optimization; synthesis;
Conference_Titel :
Communications and Photonics Conference and Exhibition, 2011. ACP. Asia
Conference_Location :
Shanghai
Print_ISBN :
978-0-8194-8961-6