Automatic Circuit Design of CMOS Miller OTA Using Cuckoo Search Algorithm

Author:

Prajapati Pankaj P.1ORCID,Shah Mihir V.1

Affiliation:

1. Gujarat Technological University, L. D. College of Engineering, Ahmedabad, India

Abstract

The circuit design of the CMOS based analog part of a mixed-signal integrated circuit (IC) needs a large fraction of the overall design cycle time. The automatic design of an analog circuit is inevitable, seeing recently development of System-on-Chip (SOC) design. This brings about the need to develop computer aided design (CAD) tools for automatic design of CMOS based analog circuits. In this article, a Cuckoo Search (CS) algorithm is presented for automatic design of a CMOS Miller Operational Transconductance Amplifier (OTA). The source code of the CS algorithm is developed using the C language. The Ngspice circuit simulator has been used as a fitness function creator and evaluator. A script file is written to provide an interface between the CS algorithm and the Ngspice simulator. BSIM3v3 MOSFET models with 0.18 µm and 0.35 µm CMOS technology have been used to simulate this circuit. The simulation results of this work are presented and compared with previous works reported in the literature. The experimental simulation results obtained by the CS algorithm satisfy all desired specifications for this circuit.

Publisher

IGI Global

Subject

Decision Sciences (miscellaneous),Computational Mathematics,Computational Theory and Mathematics,Control and Optimization,Computer Science Applications,Modeling and Simulation,Statistics and Probability

Reference22 articles.

1. Systematic design of analog integrated circuits using ant colony algorithm based on noise optimization

2. Design of Folded Cascode OTA in Different Regions of Operation through gm/ID Methodology. International Journal of Electrical, Computer, Energetic;H. D.Dammak;Electronic and Communication Engineering,2008

3. Ant system: optimization by a colony of cooperating agents

4. A comprehensive review of cuckoo search: variants and hybrids

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