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.

Chemical Optimization Algorithm for Fuzzy Controller Design
77
Chemical Optimization Algorithm for Fuzzy Controller Design
77Product Details
ISBN-13: | 9783319052441 |
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Publisher: | Springer International Publishing |
Publication date: | 03/14/2014 |
Series: | SpringerBriefs in Applied Sciences and Technology |
Edition description: | 2014 |
Pages: | 77 |
Product dimensions: | 6.10(w) x 9.25(h) x 0.01(d) |