Evolution Theory of Self-Evolving Autonomous Problem Solving Systems
The present study gives a mathematical framework for self-evolution within autonomous problem solving systems. Special attention is set on universal abstraction, thereof generation by net block homomorphism, consequently multiple order solving systems and the overall decidability of the set of the s...
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2013
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my-aeu-eprints.5202019-06-24T03:10:01Z http://ur.aeu.edu.my/520/ Evolution Theory of Self-Evolving Autonomous Problem Solving Systems Tirri, Seppo Ilari T Technology (General) The present study gives a mathematical framework for self-evolution within autonomous problem solving systems. Special attention is set on universal abstraction, thereof generation by net block homomorphism, consequently multiple order solving systems and the overall decidability of the set of the solutions. By overlapping presentation of nets new abstraction relation among nets is formulated alongside with consequent alphabetical net block renetting system proportional to normal forms of renetting systems regarding the operational power. A new structure in self-evolving problem solving is established via saturation by groups of equivalence relations and iterative closures of generated quotient transducer algebras over the whole evolution. 2013 Journal NonPeerReviewed text en http://ur.aeu.edu.my/520/1/Evolution%20Theory%20of.pdf Tirri, Seppo Ilari (2013) Evolution Theory of Self-Evolving Autonomous Problem Solving Systems. arXiv preprint arXiv:1308.5321. |
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T Technology (General) Tirri, Seppo Ilari Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
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The present study gives a mathematical framework for self-evolution within autonomous problem solving systems. Special attention is set on universal abstraction, thereof generation by net block homomorphism, consequently multiple order solving systems and the overall decidability of the set of the solutions. By overlapping presentation of nets new abstraction relation among nets is formulated alongside with consequent alphabetical net block renetting system proportional to normal forms of renetting systems regarding the operational power. A new structure in self-evolving problem solving is established via saturation by groups of equivalence relations and iterative closures of generated quotient transducer algebras over the whole evolution. |
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Journal |
author |
Tirri, Seppo Ilari |
author_facet |
Tirri, Seppo Ilari |
author_sort |
Tirri, Seppo Ilari |
title |
Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
title_short |
Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
title_full |
Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
title_fullStr |
Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
title_full_unstemmed |
Evolution Theory of Self-Evolving Autonomous Problem Solving Systems |
title_sort |
evolution theory of self-evolving autonomous problem solving systems |
publishDate |
2013 |
url |
http://ur.aeu.edu.my/520/1/Evolution%20Theory%20of.pdf http://ur.aeu.edu.my/520/ |
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1644539725863714816 |
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13.250246 |