Digital combinational circuit optimization using invasive weed optimization technique.

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Bibliographic Details
Title: Digital combinational circuit optimization using invasive weed optimization technique.
Authors: Patnaik, Prabhat K.1 prabhat.ku.patnaik@gmail.com, Panda, Dhruba C.2, Pantina, Santosh Kumar1
Source: Latin-American Journal of Physics Education. Sep2014, Vol. 8 Issue 3, p548-554. 7p.
Subject Terms: *Digital electronics, *Algorithms, Logic circuits, Electronic circuits, Energy consumption
Abstract (English): Minimization of digital circuits is required to reduce the area, power consumption, propagation delay and number of active gates. Human methods of minimization like Karnaugh map, Quine' McCluskey, Sasao methods are tedious and are limited to systems with four or five inputs. A new bio-inspired algorithm called Invasive weed optimization (IWO) is used to minimize the combinational circuits. Results are presented to show that IWO based optimization of digital circuits are equivalent to or even with better solution than human design techniques. [ABSTRACT FROM AUTHOR]
Abstract (Spanish): Se requiere minimización de circuitos digitales para reducir el área, el consumo de energía, el retardo de propagación y también el número de puertos activos. Los métodos humanos de minimización como el mapa de Karnaugh, y los métodos de Quine McCluskey y de Sasao son tediosos, y se limitan a sistemas con cuatro o cinco entradas. Un nuevo algoritmo bio-inspirado llamado optimización maleza invasora (OIV) se utiliza para minimizar los circuitos combinacionales. Se presentan los resultados para mostrar que la optimización de circuitos digitales basada en OIV es equivalente o incluso una mejor solución mejor que las técnicas diseñadas por humanos. [ABSTRACT FROM AUTHOR]
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Database: Education Research Complete
Description
Abstract:Minimization of digital circuits is required to reduce the area, power consumption, propagation delay and number of active gates. Human methods of minimization like Karnaugh map, Quine' McCluskey, Sasao methods are tedious and are limited to systems with four or five inputs. A new bio-inspired algorithm called Invasive weed optimization (IWO) is used to minimize the combinational circuits. Results are presented to show that IWO based optimization of digital circuits are equivalent to or even with better solution than human design techniques. [ABSTRACT FROM AUTHOR]
ISSN:18709095