Agriculture Reference
In-Depth Information
ESA. 2010. What is Galileo? Available at: http://www.esa.int/esaNA/GGGMX650NDC_
galileo_0.html. Accessed December 29, 2010.
FSA-IAC. 2010. GLONASS . Available at: http://www.glonass-ianc.rsa.ru/pls/htmldb/f?p=
202:1:2936089491394849. Accessed December 29, 2010.
Goering, C.E., M.L. Stone, D.W. Smith, and P.K. Turnquist. 2003. Off-Road Vehicle
Engineering Principles . St. Joseph, MI: ASAE.
Grift, T., Q. Zhang, N. Kondo, and K.C. Ting. Review of automation and robotics for the bio-
industry. Journal of Biomechatronics Engineering , 1:37-54.
Hannan, M. W., and T.F. Burks. 2004. Current developments in automated citrus harvesting.
ASAE Paper No. 04-3087. St. Joseph, MI: ASAE.
InstitutoValenciano de InvestigacionesAgrarias (IVIA). 2004. Available at: http://agroingenieria
.ivia.es.
ISO 730. 2009. Agricultural wheeled tractors, rear-mounted three-point linkages-categories
1N, 1, 2N, 2, 3N, 3, 4N, and 4.
ISO 5675. 2008. Agricultural tractors and machinery-general purpose quick-action hydraulic
couplers.
Johnson, D.A., D.J. Naffin, J.S. Puhalla, J. Sanchez, and C.K. Wellington. 2009. Development
and implementation of a team of robotic tractors for autonomous peat moss harvesting.
Journal of Field Robotics , 26:549-571.
Kondo, N., M. Monta, and T. Fujiura. 1995. Fruit harvesting robots in Japan. Physical,
Chemical, Biochemical and Biological Techniques and Processes , 18:181-184.
Kondo, N., Y. Nishitsuji, P.P. Ling, and K.C. Ting. 1996. Visual feedback guided robotic cherry
tomato harvesting. Transactions of the ASAE , 39:2331-2338.
Konolige, K., and K. Myers. 1998. The Saphira architecture for autonomous mobile robots.
In: Kortenkamp, D., P. Bonasso, and R. Murphy (Editors), Artificial Intelligence and
Mobile Robots . Cambridge, MA: MIT Press. pp. 211-242.
Long, D.S., R.E. Engel, and P. Reep. 1997. Grain Protein Sensing to Identify Nitrogen
Management Zones in Spring Wheat . SSMG-24. Bozeman, MT: Montana State University.
Lowenberg-DeBoer, J. 2002. Liability problems for autonomous equipment? In: Site-Specific
Management Center Newsletter . West Lafayette; IN: Purdue University.
Luck, J.D., S.K. Pitla, S.A. Shearer, T.G. Mueller, C.R. Dillon, J.P. Fulton, and S.F. Higgins.
2010. Potential for pesticide and nutrient savings via map-based automatic boom section
control of spray nozzles. Computers and Electronics in Agriculture , 70:19-26.
Macy, T. 2003. Field Operations Data Model. Available at: http://www.mapshots.com/ftp/
FODM/FODM_Overview.pdf.
Madsen, T.E., and H.L. Jakobsen. 2001. Mobile robot for weeding. M.S. thesis, Lynby,
Denmark: Danish Technical University.
Moorehead, S., C. Ackerman, D. Smith, J. Hoffman, and C. Wellington. 2009. Supervisory
control of multiple tractors in an orchard environment. In: Proceedings of the 4th IFAC
International Workshop on Bio-Robotics, Information Technology, and Intelligent Control
for Bio-Production Systems . Urbana, IL: University of Illinois at Urbana-Champaign.
Mott, C., G. Ashley, and S. Moorehead. 2009. Connecting high level and low level con-
trollers on robotic vehicles using a supporting architecture. In: Proceedings of the
4th IFAC International Workshop on Bio-Robotics, Information Technology, and
Intelligent Control for Bio-Production Systems. Urbana, IL: University of Illinois at
Urbana-Champaign.
Munack, A., and H. Speckmann. 2001. Communication technology is the backbone of precision
agriculture. In: Agricultural Engineering International: the CIGR Journal of Scientific
Research and Development . Vol. III. Liège, Belgium: International Commission of
Agricultural Engineering.
National Instruments. 2010. FlexRay automotive communication bus. Available at: ftp://ftp
.ni.com/pub/devzone/pdf/tut_3352.pdf. Accessed October 14, 2010.
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