A Constraint-based Encoding for Domain-Independent Temporal Planning

06/26/2018
by   Arthur Bit-Monnot, et al.
0

We present a general constraint-based encoding for domain-independent task planning. Task planning is characterized by causal relationships expressed as conditions and effects of optional actions. Possible actions are typically represented by templates, where each template can be instantiated into a number of primitive actions. While most previous work for domain-independent task planning has focused on primitive actions in a state-oriented view, our encoding uses a fully lifted representation at the level of action templates. It follows a time-oriented view in the spirit of previous work in constraint-based scheduling. As a result, the proposed encoding is simple and compact as it grows with the number of actions in a solution plan rather than the number of possible primitive actions. When solved with an SMT solver, we show that the proposed encoding is slightly more efficient than state-of-the-art methods on temporally constrained planning benchmarks while clearly outperforming other fully constraint-based approaches.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
05/09/2023

Distilling Script Knowledge from Large Language Models for Constrained Language Planning

In everyday life, humans often plan their actions by following step-by-s...
research
07/17/2023

Lifted Sequential Planning with Lazy Constraint Generation Solvers

This paper studies the possibilities made open by the use of Lazy Clause...
research
03/02/2018

Active model learning and diverse action sampling for task and motion planning

The objective of this work is to augment the basic abilities of a robot ...
research
12/08/2021

TempAMLSI : Temporal Action Model Learning based on Grammar Induction

Hand-encoding PDDL domains is generally accepted as difficult, tedious a...
research
02/07/2017

Extracting Lifted Mutual Exclusion Invariants from Temporal Planning Domains

We present a technique for automatically extracting mutual exclusion inv...
research
09/25/2019

Temporal Planning with Intermediate Conditions and Effects

Automated temporal planning is the technology of choice when controlling...
research
07/13/2021

Encoding Compositionality in Classical Planning Solutions

Classical AI planners provide solutions to planning problems in the form...

Please sign up or login with your details

Forgot password? Click here to reset