Abstract

This work examines the five-dimensional HTBFC Manifold’s info-geometrics using effective information geometry (IG) techniques. The performance of HTBFC can be analysed from a novel relativistic approach by merging IG framework. Subcases of manifolds in two and three dimensions are studied. Human-machine interactions (HMIs) can now be unified through IG in a novel way because to this study. The presentation includes the essential robotic applications of HTBFC. A few newly identified unsolved issues and suggestions for additional study are included in the conclusions.

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