The Free Energy Principle (FEP) is a theoretical framework for describing how (intelligent) systems self-organise into coherent, stable structures by minimising a free energy functional. Active Inference (AIF) is a corollary of the FEP that specifically details how systems that are able to plan for the future (agents) function by minimising particular free energy functionals that incorporate information seeking components. This paper is the first in a series of two where we derive a synthetic version of AIF on free form factor graphs. The present paper focuses on deriving a local version of the free energy functionals used for AIF. This enables us to construct a version of AIF which applies to arbitrary graphical models and interfaces with ...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
The Free Energy Principle (FEP) postulates that biological agents perceive and interact with their e...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
Active inference is a corollary of the Free Energy Principle that prescribes how self-organizing bio...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...
The free energy principle (FEP) offers a variational calculus-based description for how biological a...