A framework for hierarchical perception-action learning utilizing fuzzy reasoning
Article
Windridge, D., Felsberg, M. and Shaukat, A. 2013. A framework for hierarchical perception-action learning utilizing fuzzy reasoning. IEEE Transactions on Cybernetics. 43 (1), pp. 155-169. https://doi.org/10.1109/tsmcb.2012.2202109
| Type | Article |
|---|---|
| Title | A framework for hierarchical perception-action learning utilizing fuzzy reasoning |
| Authors | Windridge, D., Felsberg, M. and Shaukat, A. |
| Abstract | Perception-action (P-A) learning is an approach to cognitive system building that seeks to reduce the complexity associated with conventional environment-representation/action-planning approaches. Instead, actions are directly mapped onto the perceptual transitions that they bring about, eliminating the need for intermediate representation and significantly reducing training requirements. We here set out a very general learning framework for cognitive systems in which online learning of the P-A mapping may be conducted within a symbolic processing context, so that complex contextual reasoning can influence the P-A mapping. In utilizing a variational calculus approach to define a suitable objective function, the P-A mapping can be treated as an online learning problem via gradient descent using partial derivatives. Our central theoretical result is to demonstrate top-down modulation of low-level perceptual confidences via the Jacobian of the higher levels of a subsumptive P-A hierarchy. Thus, the separation of the Jacobian as a multiplying factor between levels within the objective function naturally enables the integration of abstract symbolic manipulation in the form of fuzzy deductive logic into the P-A mapping learning. We experimentally demonstrate that the resulting framework achieves significantly better accuracy than using P-A learning without top-down modulation. We also demonstrate that it permits novel forms of context-dependent multilevel P-A mapping, applying the mechanism in the context of an intelligent driver assistance system. |
| Sustainable Development Goals | 9 Industry, innovation and infrastructure |
| Middlesex University Theme | Health & Wellbeing |
| Publisher | IEEE |
| Journal | IEEE Transactions on Cybernetics |
| ISSN | 2168-2267 |
| Electronic | 2168-2275 |
| Publication dates | |
| Online | 05 Jul 2012 |
| Feb 2013 | |
| Publication process dates | |
| Submitted | 09 Aug 2011 |
| Accepted | 04 May 2012 |
| Deposited | 15 Dec 2025 |
| Output status | Published |
| Digital Object Identifier (DOI) | https://doi.org/10.1109/tsmcb.2012.2202109 |
| PubMed ID | 22773046 |
| Related Output | |
| Has metadata | http://europepmc.org/abstract/med/22773046 |
https://repository.mdx.ac.uk/item/16607v
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