Title of article :
Optimal IIR filter design using Gravitational Search Algorithm with Wavelet Mutation
Author/Authors :
Saha, S.K. National Institute of Technology - Department of Electrical and Computer Engineering, India , Kar, R. National Institute of Technology - Department of Electrical and Computer Engineering, India , Mandal, D. National Institute of Technology - Department of Electrical and Computer Engineering, India , Ghoshal, S.P. National Institute of Technology - Department of Electrical Engineering, India
From page :
25
To page :
39
Abstract :
This paper presents a global heuristic search optimization technique, which is a hybridized version of the Gravitational Search Algorithm (GSA) and Wavelet Mutation (WM) strategy. Thus, the Gravitational Search Algorithm with Wavelet Mutation (GSAWM) was adopted for the design of an 8th-order infinite impulse response (IIR) filter. GSA is based on the interaction of masses situated in a small isolated world guided by the approximation of Newtonian’s laws of gravity and motion. Each mass is represented by four parameters, namely, position, active, passive and inertia mass. The position of the heaviest mass gives the near optimal solution. For better exploitation in multidimensional search spaces, the WM strategy is applied to randomly selected particles that enhance the capability of GSA for finding better near optimal solutions. An extensive simulation study of low-pass (LP), high-pass (HP), band-pass (BP) and band-stop (BS) IIR filters unleashes the potential of GSAWM in achieving better cut-off frequency sharpness, smaller pass band and stop band ripples, smaller transition width and higher stop band attenuation with assured stability
Keywords :
IIR filter , GSAWM , Evolutionary optimization techniques , Magnitude response , Pole , zero plot , Stability
Journal title :
Journal Of King Saud University - Computer an‎d Information Sciences
Journal title :
Journal Of King Saud University - Computer an‎d Information Sciences
Record number :
2609810
Link To Document :
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