Design and development of the architecture of an agricultural mobile robot

Author:

Tabile Rubens A1,Godoy Eduardo P1,Pereira Robson R. D1,Tangerino Giovana T1,Porto Arthur J. V1,Inamasu Ricardo Y2

Affiliation:

1. USP

2. Embrapa Instrumentação Agropecuária

Abstract

Parameters such as tolerance, scale and agility utilized in data sampling for using in Precision Agriculture required an expressive number of researches and development of techniques and instruments for automation. It is highlighted the employment of methodologies in remote sensing used in coupled to a Geographic Information System (GIS), adapted or developed for agricultural use. Aiming this, the application of Agricultural Mobile Robots is a strong tendency, mainly in the European Union, the USA and Japan. In Brazil, researches are necessary for the development of robotics platforms, serving as a basis for semi-autonomous and autonomous navigation systems. The aim of this work is to describe the project of an experimental platform for data acquisition in field for the study of the spatial variability and development of agricultural robotics technologies to operate in agricultural environments. The proposal is based on a systematization of scientific work to choose the design parameters utilized for the construction of the model. The kinematic study of the mechanical structure was made by the virtual prototyping process, based on modeling and simulating of the tension applied in frame, using the.

Publisher

FapUNIFESP (SciELO)

Subject

Agricultural and Biological Sciences (miscellaneous)

Reference26 articles.

1. An Agricultural Mobile Robot with Vision-Based Perception for Mechanical Weed Control;ÅSTRAND B;Autonomous Robots,2002

2. Determinação do "status" nutricional de nitrogênio no feijoeiro utilizando imagens digitais coloridas;BAESSO M.M;Engenharia Agrícola,2007

3. Agricultural Robotic Platform with Four Wheel Steering for Weed Detection;BAK T;Biosystems Engineering,2004

4. An autonomous robot for weed control;BAKKER T,2009

5. An autonomous weeding robot for organic farming;BAKKER T,2006

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