In order to represent planning problems, Artificial Intelligence planning languages are used to describe environment's conditions and operators which can lead to desired goals by generating a chain of actions based on these conditions and operators. Historically, several languages have been defined according to different planning paradigms. Most of these languages are often strongly related to specific planning systems and lack a clear formal semantics. A recent work defines a formal framework for timeline-based planning and scheduling providing a clear semantics for planning concepts needed to specify timeline-based planning problems. This abstract introduces ghost, a new specification language for timeline-based planning and scheduling based on such a framework. The main aim of ghost is to provide a concrete and compact specification language for timeline-based planning and scheduling domains and problems dealing also with uncertainty.

A language for timeline-based planning

Bernardi Giulio;Cesta Amedeo;Orlandini Andrea;Umbrico Alessandro;
2020

Abstract

In order to represent planning problems, Artificial Intelligence planning languages are used to describe environment's conditions and operators which can lead to desired goals by generating a chain of actions based on these conditions and operators. Historically, several languages have been defined according to different planning paradigms. Most of these languages are often strongly related to specific planning systems and lack a clear formal semantics. A recent work defines a formal framework for timeline-based planning and scheduling providing a clear semantics for planning concepts needed to specify timeline-based planning problems. This abstract introduces ghost, a new specification language for timeline-based planning and scheduling based on such a framework. The main aim of ghost is to provide a concrete and compact specification language for timeline-based planning and scheduling domains and problems dealing also with uncertainty.
2020
Istituto di Scienze e Tecnologie della Cognizione - ISTC
Inglese
Riccardo De Benedictis, Luca Geretti, Andrea Micheli
OVERLAY 2020
2nd Workshop on Artificial Intelligence and and Formal Verification, Logic, Automata, and Synthesis (OVERLAY)
53
58
http://www.scopus.com/record/display.url?eid=2-s2.0-85099361457&origin=inward
CEUR-WS.org
Aachen
GERMANIA
Sì, ma tipo non specificato
25/09/2020
Virtual, Online
timeline-based planning
specification language
2
none
Bernardi, Giulio; Cesta, Amedeo; Orlandini, Andrea; Umbrico, Alessandro; Mayer, Marta Cialdea
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
   Safe and effective HumAn-Robot coopEration toWards a better cOmpetiveness on cuRrent automation lacK manufacturing processes.
   SHAREWORK
   H2020
   820807
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/395346
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