An improved global-best-driven flower pollination algorithm for optimal design of two-dimensional FIR filter
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geometry and Topology,Theoretical Computer Science,Software
Link
http://link.springer.com/content/pdf/10.1007/s00500-018-3484-3.pdf
Reference47 articles.
1. Abedinpourshotorban H, Shamsuddin SM, Beheshti Z, Jawawi DNA (2016) Electromagnetic field optimization: a physics-inspired metaheuristic optimization algorithm. Swarm Evolut Comput 26:8–22
2. Aggarwal A, Kumar M, Rawat TK, Upadhyay DK (2016) Optimal design of 2D FIR filters with quadrantally symmetric properties using fractional derivative constraints. Circ Syst Signal Process 35(6):2213–2257
3. Bansal JC, Singh PK, Saraswat M, Verma A, Jadon SS, Abraham A (2011) Inertia weight strategies in particle swarm optimization. In: Third world congress on nature and biologically inspired computing, pp 633–640
4. Bindima T, Elias E (2016) Design of efficient circularly symmetric two-dimensional variable digital fir filters. J Adv Res 7(3):336–347
5. Biswas S, Mandal KK, Chakraborty N (2013) Constriction factor based particle swarm optimization for analyzing tuned reactive power dispatch. Front Energy 7(2):174–181
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