Author of the publication

Real-Valued Multimodal Fitness Landscape Characterization for Evolution.

, , , , and . ICONIP (1), volume 6443 of Lecture Notes in Computer Science, page 567-574. Springer, (2010)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Utility Model Re-description within a Motivational System for Cognitive Robotics., , , and . IROS, page 2324-2329. IEEE, (2018)Improving extrinsically motivated developmental robots through intrinsic motivations., , , and . ICDL-EPIROB, page 154-155. IEEE, (2016)Intelligent Virtual Interface for Improving Performance in HPC Centers by Modelling Users and their Satisfaction., , , and . VECIMS, page 69-74. IEEE, (2006)Introducing separable utility regions in a motivational engine for cognitive developmental robotics., , , , and . Integr. Comput. Aided Eng., 26 (1): 3-20 (2019)Using adaptive artificial neural networks for reconstructing irregularly sampled laser Doppler velocimetry signals., , , and . IEEE Trans. Instrum. Meas., 55 (3): 916-922 (2006)Unsupervised Segmentation of Hyperspectral Images through Evolved Cellular Automata., , , and . KES, volume 243 of Frontiers in Artificial Intelligence and Applications, page 2160-2169. IOS Press, (2012)A Profiling Based Intelligent Resource Allocation System., , , , and . KES (1), volume 3681 of Lecture Notes in Computer Science, page 840-846. Springer, (2005)Some thoughts on the use of sampled fitness functions for the multilevel Darwinist brain., and . Inf. Sci., 161 (3-4): 159-179 (2004)Simplifying the creation and management of utility models in continuous domains for cognitive robotics., , , and . Neurocomputing, (2019)Open-ended evolution as a means to self-organize heterogeneous multi-robot systems in real time., , , and . Robotics Auton. Syst., 58 (12): 1282-1291 (2010)