Title
Efficient Power-Aware Resource Constrained Scheduling and Execution for Planetary Rovers.
Abstract
This paper presents and evaluates an integrated power-aware, model-based autonomous control architecture for managing the execution of rover actions in the context of planetary mission exploration. The proposed solution is embedded within an application scenario of reference which consists on a rover-based mission concept aimed at collecting Mars samples that may be returned to Earth at a later date for further investigation. This study elaborates on the exploitation of advanced decision-making capabilities within a flexible execution process targeted at generating and safely executing scheduling solutions representing mission plans, seamlessly supporting online plan optimization and dynamic management of new incoming activities. In this work, an experimental analysis on the performance of the control architecture's capabilities is presented, throughout two representative cases of study running upon an integrated test-bed platform built on top of the 3DROV ESA planetary rover simulator.
Year
DOI
Venue
2015
10.1007/978-3-319-24309-2_29
AI*IA 2015: ADVANCES IN ARTIFICIAL INTELLIGENCE
Field
DocType
Volume
Mars Exploration Program,Architecture,Scheduling (computing),Computer science,Dynamic management,Planetary rover,Autonomous control,Distributed computing
Conference
9336
ISSN
Citations 
PageRank 
0302-9743
1
0.34
References 
Authors
12
5
Name
Order
Citations
PageRank
Daniel Díaz1434.19
Amedeo Cesta21050112.78
Angelo Oddi366664.41
Riccardo Rasconi410817.09
María Dolores Rodríguez-Moreno55211.65