Explains that the first robotics commercialization project of the National Robotics Engineering Consortium (USA) is Demeter, the first unmanned, fully automated windrower. Describes how lunar rover and terrestrial military vehicle technology is combined to define two core technologies for mobile agricultural equipment ‐ FieldNav, the digital machine; and FieldHand, the digital operator. Outlines the hardware and software used; standard and custom components used for safety and customized electronics; modifications for drive‐by‐wire; the event‐driven, behaviour‐based architecture (SAUSAGES); sensing for crop line tracking; other detectors, trackers and GPS used for guidance. Finally, explains the benefits of such automation to agriculture and what the future holds for commercialization of Demeter.
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1 October 1997
Technical Paper|
October 01 1997
Robot windrower is first unmanned harvester Available to Purchase
Kerien Fitzpatrick;
Kerien Fitzpatrick
Senior Research Scientist, National Robotics Engineering Consortium, The Robotics Institute, Carnegie Mellon University, Pittsburgh, USA
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David Pahnos;
David Pahnos
Director, National Robotics Engineering Consortium, The Robotics Institute, Carnegie Mellon University, Pittsburgh, USA
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Walter V. Pype
Walter V. Pype
Chief Engineer, New Holland North America, New Holland, USA
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Publisher: Emerald Publishing
Online ISSN: 1758-5791
Print ISSN: 0143-991X
© Company
1997
Industrial Robot (1997) 24 (5): 342–348.
Citation
Fitzpatrick K, Pahnos D, Pype WV (1997), "Robot windrower is first unmanned harvester". Industrial Robot, Vol. 24 No. 5 pp. 342–348, doi: https://doi.org/10.1108/01439919710177137
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