Profiles.QuintonJC History
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(:Website:http://quintonj.free.fr:)
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(:Topics:[[!Control]] (predictive, distributed), [[!Architecture]] (dynamical complex systems), [[!Vision]] (perception, bio-inspired, active, attention, saliency), [[!Coordination]] (human/robot, multi-agent), [[!Navigation]] (planification), [[!Autonomy]] (adaptivity, learning, long-term memory), [[!Artificial intelligence]], [[!Implementation]] (simulation, parallel processing):)
(:Skills:programmation ([[!Java]], [[!Cpp]]...), distributed models ([[!Neural network]], [[!Neural field]], [[!GMM]], [[!LWPR]]...), applied maths ([[!PDE]], [[!SVD]], [[!PCA]], [[!Fourier]]...), learning methods:)
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----
!!!Research description
Generally speaking, I'm interested in distributed models of life and cognition, with a focus on anticipatory systems.
In practice, I use computational models to test and refine hypotheses, mainly studying sensorimotor behaviors.
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!!!Research description
Generally speaking, I'm interested in distributed models of life and cognition, with a focus on anticipatory systems.
In practice, I use computational models to test and refine hypotheses, mainly studying sensorimotor behaviors.
!!!Research description
Generally speaking, I'm interested in distributed models of life and cognition, with a focus on anticipatory systems.
In practice, I use computational models to test and refine hypotheses, mainly studying sensorimotor behaviors.
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(:Skills:programmation ([[!Java]], [[!Cpp]]...), distributed models ([[!Neural network]], [[!Neural field]], [[!GMM]], [[!LWPR]]...), applied maths ([[!PDE]], [[!SVD]], [[!PCA]], [[!Fourier]]...), learning methods ([[!Reinforcement]], [[!Unsupervized]], [[!Statistical]]):)
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(:Skills:programmation ([[!Java]], [[!Cpp]]...), distributed models ([[!Neural network]], [[!Neural field]], [[!GMM]], [[!LWPR]]...), applied maths ([[!PDE]], [[!SVD]], [[!PCA]], [[!Fourier]]...), learning methods:)
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(:Skills:programmation ([[!Java]], [[!Cpp]]...), distributed models ([[!Neural network]], [[!Neural field]], [[!GMM]], [[!LWPR]]...), applied maths ([[!PDE]], [[!SVD]], [[!PCA]], [[!Fourier]]...), learning methods ([[!Reinforcement]], [[!Unsupervized]], [[!Statistical]]):)
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(:Skills:programmation ([[!Java]], [[!Cpp]]...), distributed models ([[!Neural network]], [[!Neural field]], [[!Gaussian Mixture]], [[!LWPR]]...), applied maths ([[!PDE]], [[!SVD]], [[!PCA]], [[!Fourier]]...), learning methods ([[!Reinforcement]], [[!Unsupervized]], [[!Statistical]]):)
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(:Topics:[[!Control]] (predictive, distributed), [[!Architecture]] (complex systems), [[!Vision]] (perception, bio-inspired, active, attention, saliency), [[!Coordination]] (human/robot, multi-agent), [[!Navigation]] (planification), [[!Autonomy]] (adaptivity, learning, long-term memory), [[!Artificial intelligence]], [[!Implementation]] (simulation, parallel processing):)
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(:Topics:[[!Control]] (predictive, distributed), [[!Architecture]] (dynamical complex systems), [[!Vision]] (perception, bio-inspired, active, attention, saliency), [[!Coordination]] (human/robot, multi-agent), [[!Navigation]] (planification), [[!Autonomy]] (adaptivity, learning, long-term memory), [[!Artificial intelligence]], [[!Implementation]] (simulation, parallel processing):)
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(:Skills:programmation([[!Java]], [[!Cpp]]...), distributed models([[!Neural nets]], [[!Neural fields]]...), applied maths([[!SVD]], [[!PCA]], [[!FFT]]...):)
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(:Topics:[[!Control]] (predictive, distributed), [[!Architecture]] (complex systems), [[!Vision]] (perception, bio-inspired, active, attention, saliency), [[!Coordination]] (human/robot, multi-agent), [[!Navigation]] (planification), [[!Autonomy]] (adaptivity, learning, long-term memory), [[!Artificial intelligence]], [[!Implementation]] (simulation, parallel processing):)
(:Skills:Programmation ([[!Java]], [[!Cpp]]...), Distributed models ([[!Neural nets]], [[!Neural fields]]...), Applied maths ([[!SVD]], [[!PCA]], [[!FFT]]...):)
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(:Topics:[[!Control]](predictive, distributed), [[!Architecture]](complex systems), [[!Vision]](perception, bio-inspired, active, attention, saliency), [[!Coordination]](human/robot, multi-agent), [[!Navigation]](planification), [[!Autonomy]](adaptivity, learning, long-term memory), [[!Artificial intelligence]], [[!Implementation]](simulation, parallel processing):)
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(:Topics:[[!Control]](predictive, distributed), [[!Architecture]](complex systems), [[!Vision]](perception, bio-inspired, active, attention, saliency), [[!Coordination]](human/robot, multi-agent), [[!Navigation]](planification), [[!Autonomy]](adaptivity, learning, long-term memory), [[!AI]], [[!Implementation]](simulation, parallel processing):)
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(:Topics:[[!Control]](predictive,distributed),[[!Architecture]](complex systems),[[!Vision]](perception,bio-inspired,active,attention,saliency),[[!Coordination]](human/robot, multi-agent),[[!Navigation]](planification),[[!Autonomy]](adaptivity,learning,long-term memory),[[!Artificial Intelligence]],[[!Implementation]](simulation,parallel processing):)
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(:Topics:[[!Control]](predictive, distributed), [[!Architecture]](complex systems), [[!Vision]](perception, bio-inspired, active, attention, saliency), [[!Coordination]](human/robot, multi-agent), [[!Navigation]](planification), [[!Autonomy]](adaptivity, learning, long-term memory), [[!Artificial Intelligence]], [[!Implementation]](simulation, parallel processing):)
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(:Topics:[[!Control]](predictive,distributed),[[!Architecture]](complex systems),[[!Vision]](perception,bio-inspired,active,attention,saliency),[[!Coordination]](human/robot, multi-agent),[[!Navigation]](planification),[[!Autonomy]](adaptivity,learning,long-term memory),[[!Artificial Intelligence]],[[!Implementation]](simulation,parallel processing):)
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(:LastName:Quinton:)
(:FirstName:Jean-Charles:)
(:Position:Associate professor:)
(:Start:2011:)
(:Phone:+33 (0)4 73 40 76 53:)
(:Office:3111:)
(:Photo:QuintonJC.jpg:)
(:Website:quintonj.free.fr:)
(:title {$:FirstName} {$:LastName}:)
(:FirstName:Jean-Charles:)
(:Position:Associate professor:)
(:Start:2011:)
(:Phone:+33 (0)4 73 40 76 53:)
(:Office:3111:)
(:Photo:QuintonJC.jpg:)
(:Website:quintonj.free.fr:)
(:title {$:FirstName} {$:LastName}:)