Toward agent programs with circuit semantics

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Toward agent programs with circuit semantics
Nilsson, Nils J.
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Last edited by WorkBot
December 15, 2009 | History

Toward agent programs with circuit semantics

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Abstract: "New ideas are presented for computing and organizing actions for autonomous agents in dynamic environments -- environments in which the agent's current situation cannot always be accurately discerned and in which the effects of actions cannot always be reliably predicted. The notion of 'circuit semantics' for programs based on 'teleo-reactive trees' is introduced. Program execution builds a combinational circuit which receives sensory inputs and controls actions. These formalisms embody a high degree of inherent conditionality and thus yield programs that are suitably reactive to their environments. At the same time, the actions computed by the programs are guided by the overall goals of the agent.

The paper also speculates about how programs using these ideas could be automatically generated by artificial intelligence planning systems and adapted by learning methods."

Publish Date
Language
English
Pages
33

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Edition Availability
Cover of: Toward agent programs with circuit semantics
Toward agent programs with circuit semantics
1992, Stanford University, Dept. of Computer Science
in English

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Book Details


Edition Notes

Cover title.

"January 1992."

Includes bibliographical references.

Supported in part by NASA. NCC2-494.

Published in
Stanford, Calif
Series
Report / Stanford University. Dept. of Computer Science -- STAN-CS-92-1412., Report (Stanford University. Computer Science Dept.) -- STAN- CS-92-1412.

The Physical Object

Pagination
33 p. :
Number of pages
33

ID Numbers

Open Library
OL17591634M
OCLC/WorldCat
26136507

Source records

Oregon Libraries MARC record

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Download catalog record: RDF / JSON / OPDS | Wikipedia citation
December 15, 2009 Edited by WorkBot link works
April 24, 2009 Edited by ImportBot add OCLC number
September 29, 2008 Created by ImportBot Imported from Oregon Libraries MARC record