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Active Inference for Learning and Development in Embodied Neuromorphic Agents
by
Jimenez Rodriguez, Alejandro
, Hamburg, Sarah
, Htet, Aung
, Di Nuovo, Alessandro
in
active inference
/ Adaptation
/ Artificial intelligence
/ Brain research
/ Cognition & reasoning
/ Cognitive ability
/ developmental robotics
/ Energy efficiency
/ Free energy
/ Inference
/ Learning
/ Machine learning
/ Methods
/ neurorobotics
/ Reagents
/ Robotics
2024
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Active Inference for Learning and Development in Embodied Neuromorphic Agents
by
Jimenez Rodriguez, Alejandro
, Hamburg, Sarah
, Htet, Aung
, Di Nuovo, Alessandro
in
active inference
/ Adaptation
/ Artificial intelligence
/ Brain research
/ Cognition & reasoning
/ Cognitive ability
/ developmental robotics
/ Energy efficiency
/ Free energy
/ Inference
/ Learning
/ Machine learning
/ Methods
/ neurorobotics
/ Reagents
/ Robotics
2024
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Do you wish to request the book?
Active Inference for Learning and Development in Embodied Neuromorphic Agents
by
Jimenez Rodriguez, Alejandro
, Hamburg, Sarah
, Htet, Aung
, Di Nuovo, Alessandro
in
active inference
/ Adaptation
/ Artificial intelligence
/ Brain research
/ Cognition & reasoning
/ Cognitive ability
/ developmental robotics
/ Energy efficiency
/ Free energy
/ Inference
/ Learning
/ Machine learning
/ Methods
/ neurorobotics
/ Reagents
/ Robotics
2024
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Active Inference for Learning and Development in Embodied Neuromorphic Agents
Journal Article
Active Inference for Learning and Development in Embodied Neuromorphic Agents
2024
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Overview
Taking inspiration from humans can help catalyse embodied AI solutions for important real-world applications. Current human-inspired tools include neuromorphic systems and the developmental approach to learning. However, this developmental neurorobotics approach is currently lacking important frameworks for human-like computation and learning. We propose that human-like computation is inherently embodied, with its interface to the world being neuromorphic, and its learning processes operating across different timescales. These constraints necessitate a unified framework: active inference, underpinned by the free energy principle (FEP). Herein, we describe theoretical and empirical support for leveraging this framework in embodied neuromorphic agents with autonomous mental development. We additionally outline current implementation approaches (including toolboxes) and challenges, and we provide suggestions for next steps to catalyse this important field.
Publisher
MDPI AG
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