Towards a component-based software architecture for genetic algorithms
Leidy Garzon Rodriguez, Henry Alberto Diosa, Sergio Rojas–Galeano
Abstract
Leidy Garzon Rodriguez, Henry Alberto Diosa, Sergio Rojas–Galeano
Abstract
We are motivated on the idea of whether a component-based software architecture for evolutionary algorithms would be feasible and advantageous. We believe that depending on the evolutionary computation model, software implementing these algorithms can be robustly built assembling loosely-coupled computational blocks, likewise hardware systems that are built gluing together prefabricated electronic components. We set about to develop an initial architecture with a focus on the genetic algorithm. The paper describes the analysis and design principles used, the obtained architecture, the resulting component specification and closes with a discussion about the benefits of this approach, as well as initial steps towards its implementation in a user-friendly platform for component-based visual programming. The complete portfolio of software models is available at:http://arquisoft.udistrital.edu.co/portal/web/guest/proy-compAG.
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We are motivated on the idea of whether a component-based software architecture for evolutionary algorithms would be feasible and advantageous. We believe that depending on the evolutionary computation model, software implementing these algorithms can be robustly built assembling loosely-coupled computational blocks, likewise hardware systems that are built gluing together prefabricated electronic components. We set about to develop an initial architecture with a focus on the genetic algorithm. The paper describes the analysis and design principles used, the obtained architecture, the resulting component specification and closes with a discussion about the benefits of this approach, as well as initial steps towards its implementation in a user-friendly platform for component-based visual programming. The complete portfolio of software models is available at:http://arquisoft.udistrital.edu.co/portal/web/guest/proy-compAG.
Key concepts: Computer science, Component (thermodynamics), Component-based software engineering, Common Component Architecture, Software architecture, Resource-oriented architecture, Software, Architecture