2014Unpublished venueRequires access

Optimal design of combinational logic circuits using genetic algorithm and Reed-Muller Universal Logic Modules

C. K. Vijayakumari, P. Mythili, Rekha K. James, S. Akhil Kumar

Open publisher page 6 citations

Abstract

Conventional design of digital circuits is a very complex task which requires much knowledge in domain-specific rules. But, combinational digital circuits can be evolved automatically using evolutionary techniques. This work proposes new approaches for the automated design of combinational digital circuits using Genetic Algorithm (GA) and Reed Muller Universal Logic module (RM ULM). Here 2-1 RM-ULM has been used as the only design unit for the automated design of combinational digital circuits. Certain modifications have been made on the existing Shannon's decomposition technique for the design. Several circuits are synthesized with these modified methods and compared with the existing standard implementation technique using single control line Reed Muller Universal Logic Modules(RM ULM(1)). Manufacturing cost can be reduced by replicating the same element. With this method, the number of levels required as well as the number of modules needed is reduced considerably, thus reducing the cost, delay and power consumption.

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What this paper is about

Conventional design of digital circuits is a very complex task which requires much knowledge in domain-specific rules. But, combinational digital circuits can be evolved automatically using evolutionary techniques. This work proposes new approaches for the automated design of combinational digital circuits using Genetic Algorithm (GA) and Reed Muller Universal Logic module (RM ULM). Here 2-1 RM-ULM has been used as the only design unit for the automated design of combinational digital circuits. Certain modifications have been made on the existing Shannon's decomposition technique for the design. Several circuits are synthesized with these modified methods and compared with the existing standard implementation technique using single control line Reed Muller Universal Logic Modules(RM ULM(1)). Manufacturing cost can be reduced by replicating the same element. With this method, the number of levels required as well as the number of modules needed is reduced considerably, thus reducing the cost, delay and power consumption.

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Available abstract

Conventional design of digital circuits is a very complex task which requires much knowledge in domain-specific rules. But, combinational digital circuits can be evolved automatically using evolutionary techniques. This work proposes new approaches for the automated design of combinational digital circuits using Genetic Algorithm (GA) and Reed Muller Universal Logic module (RM ULM). Here 2-1 RM-ULM has been used as the only design unit for the automated design of combinational digital circuits. Certain modifications have been made on the existing Shannon's decomposition technique for the design. Several circuits are synthesized with these modified methods and compared with the existing standard implementation technique using single control line Reed Muller Universal Logic Modules(RM ULM(1)). Manufacturing cost can be reduced by replicating the same element. With this method, the number of levels required as well as the number of modules needed is reduced considerably, thus reducing the cost, delay and power consumption.

Key concepts: Combinational logic, Digital electronics, Sequential logic, Computer science, Logic synthesis, Register-transfer level, Logic gate, Logic optimization

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