Chemical Optimization Algorithm for Fuzzy Controller Design: SpringerBriefs in Applied Sciences and Technology
Autor Leslie Astudillo, Patricia Melin, Oscar Castilloen Limba Engleză Paperback – 26 mar 2014
This chemical reaction optimization paradigm is also applied to solve the tracking problem for the dynamic model of a unicycle mobile robot by integrating a kinematic and a torque controller based on fuzzy logic theory. Computer simulations are presented confirming that this optimization paradigm is able to outperform other optimization techniques applied to this particular robot application.
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Specificații
ISBN-13: 9783319052441
ISBN-10: 3319052446
Pagini: 88
Ilustrații: VIII, 77 p. 32 illus.
Dimensiuni: 155 x 235 x 5 mm
Greutate: 0.14 kg
Ediția:2014
Editura: Springer International Publishing
Colecția Springer
Seriile SpringerBriefs in Applied Sciences and Technology, SpringerBriefs in Computational Intelligence
Locul publicării:Cham, Switzerland
ISBN-10: 3319052446
Pagini: 88
Ilustrații: VIII, 77 p. 32 illus.
Dimensiuni: 155 x 235 x 5 mm
Greutate: 0.14 kg
Ediția:2014
Editura: Springer International Publishing
Colecția Springer
Seriile SpringerBriefs in Applied Sciences and Technology, SpringerBriefs in Computational Intelligence
Locul publicării:Cham, Switzerland
Public țintă
ResearchCuprins
Introduction.-
Theory and Background.-
Chemical Definitions.-
The Proposed Chemical Reaction Algorithm.-
Application Problems.-
Simulation Results.-
Conclusions.
Theory and Background.-
Chemical Definitions.-
The Proposed Chemical Reaction Algorithm.-
Application Problems.-
Simulation Results.-
Conclusions.
Textul de pe ultima copertă
In this book, a novel optimization method inspired by a paradigm from nature is introduced. The chemical reactions are used as a paradigm to propose an optimization method that simulates these natural processes. The proposed algorithm is described in detail and then a set of typical complex benchmark functions is used to evaluate the performance of the algorithm. Simulation results show that the proposed optimization algorithm can outperform other methods in a set of benchmark functions.
This chemical reaction optimization paradigm is also applied to solve the tracking problem for the dynamic model of a unicycle mobile robot by integrating a kinematic and a torque controller based on fuzzy logic theory. Computer simulations are presented confirming that this optimization paradigm is able to outperform other optimization techniques applied to this particular robot application
This chemical reaction optimization paradigm is also applied to solve the tracking problem for the dynamic model of a unicycle mobile robot by integrating a kinematic and a torque controller based on fuzzy logic theory. Computer simulations are presented confirming that this optimization paradigm is able to outperform other optimization techniques applied to this particular robot application
Caracteristici
Presents a Chemical Optimization Algorithm for Fuzzy Controller Design The novel algorithm is described in detail and then a set of typical complex benchmark functions is used to evaluate the performance of the algorithm Includes an application to a dynamic model of a unicycle mobile robot by integrating a kinematic and a torque controller based on fuzzy logic theory Computer simulations are presented confirming that this optimization paradigm is able to outperform other optimization techniques Includes supplementary material: sn.pub/extras