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Design, implementation and validation of a stability model for articulated autonomous robotic systems

Carabin, G.
•
Mazzetto, F.
•
Vidoni, R.
•
GASPARETTO, Alessandro
2016
  • journal article

Periodico
ROBOTICS AND AUTONOMOUS SYSTEMS
Abstract
The use of robots in agriculture and forestry is rapidly growing thanks to the progress in sensors, controllers and mechatronics devices. Especially in hilly and mountainous terrains, the development of (semi-)autonomous systems that could travel safely on uneven terrain and perform many operations is an open field of investigation. One of the most promising mobile robot architectures is the articulated 4-wheeled system that shows an optimal steering capacity, and the possibility to adapt to uneven terrains thanks to a central passive degree of freedom. In this paper, the kinematic and (quasi-)static model for evaluating the phase I instability presented in Baker and Guzzomi(2013) has been firstly extended to allow to threat a generic articulated robotic system and to forecast the instability conditions. Then, the model and the stability conditions have been implemented in a Matlab (TM) simulator and validated by means of an experimental emulator. Finally, a first prototype for a mechatronic anti-overturning device is discussed.
DOI
10.1016/j.robot.2016.05.008
WOS
WOS:000382343800013
Archivio
http://hdl.handle.net/11390/1098289
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85017410811
Diritti
closed access
Soggetti
  • Articulated mobile ro...

  • Stability

  • Dynamic

  • Agricultural robotic

  • TRACTOR ROLLOVER

  • PHASE-I

  • PREDICTION

  • ALGORITHM

  • SLOPES

  • MARGIN

Scopus© citazioni
12
Data di acquisizione
Jun 7, 2022
Vedi dettagli
Web of Science© citazioni
8
Data di acquisizione
Mar 25, 2024
Visualizzazioni
1
Data di acquisizione
Apr 19, 2024
Vedi dettagli
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