Mapping system for tractor-implement performance

novel data acquisition and differential global positioning system has been successfully integrated on-board a Massey Ferguson 3060 agricultural tractor for mapping tractor-implement performance with its geographical location. Both commercial and specially developed transducers were incorporated int...

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Main Authors: Yahya, Azmi, Bardaie, Muhamad Zohadie, Kheiralla, Abdelmotalab Fadlelmola, Gew, Soon Kiat, Ng, Eng Boon
格式: 文件
语言:English
English
出版: Elsevier 2009
在线阅读:http://psasir.upm.edu.my/id/eprint/7741/1/Mapping%20system%20for%20tractor-implement%20performance.pdf
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author Yahya, Azmi
Bardaie, Muhamad Zohadie
Kheiralla, Abdelmotalab Fadlelmola
Gew, Soon Kiat
Ng, Eng Boon
author_facet Yahya, Azmi
Bardaie, Muhamad Zohadie
Kheiralla, Abdelmotalab Fadlelmola
Gew, Soon Kiat
Ng, Eng Boon
author_sort Yahya, Azmi
collection UPM
description novel data acquisition and differential global positioning system has been successfully integrated on-board a Massey Ferguson 3060 agricultural tractor for mapping tractor-implement performance with its geographical location. Both commercial and specially developed transducers were incorporated into the system for the needed tractor-implement performance measurements. Transducers were developed to measure drawbar pull at the tractor drawbar point, wheel torques and theoretical speeds at both tractor rear drive wheels, PTO torque at the tractor PTO output, forces at the tractor three-point linkages, and tillage depth at the tractor rockshaft. This complete and integrated system is capable of measuring, displaying and recording in real-time among others, tractor's theoretical travel speed, actual travel speed, fuel consumption rate, rear drive wheel slippage, rear drive wheel torque, pitch and row angles, and also implement's PTO torque, drawbar force, three-point hitch forces, and tillage depth. With the added differential Global Position System (DGPS) option, the system could be used for spatial mapping of the tractor-implement field performances. Under such configuration, the complete system is capable of measuring, displaying, and recording in real-time tractor-implement's geo-position in the field with respect to its measured performance. Static calibration tests on various associated transducers for the required measurements showed excellent linearity with correlation coefficients that are closed to 1. The developed system has been extensively and successfully field demonstrated for spatial mapping of tractor-implement field performance with a mounted disk plow on Serdang Series sandy clay loam soil.
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spelling upm.eprints-77412015-11-04T03:51:16Z http://psasir.upm.edu.my/id/eprint/7741/ Mapping system for tractor-implement performance Yahya, Azmi Bardaie, Muhamad Zohadie Kheiralla, Abdelmotalab Fadlelmola Gew, Soon Kiat Ng, Eng Boon novel data acquisition and differential global positioning system has been successfully integrated on-board a Massey Ferguson 3060 agricultural tractor for mapping tractor-implement performance with its geographical location. Both commercial and specially developed transducers were incorporated into the system for the needed tractor-implement performance measurements. Transducers were developed to measure drawbar pull at the tractor drawbar point, wheel torques and theoretical speeds at both tractor rear drive wheels, PTO torque at the tractor PTO output, forces at the tractor three-point linkages, and tillage depth at the tractor rockshaft. This complete and integrated system is capable of measuring, displaying and recording in real-time among others, tractor's theoretical travel speed, actual travel speed, fuel consumption rate, rear drive wheel slippage, rear drive wheel torque, pitch and row angles, and also implement's PTO torque, drawbar force, three-point hitch forces, and tillage depth. With the added differential Global Position System (DGPS) option, the system could be used for spatial mapping of the tractor-implement field performances. Under such configuration, the complete system is capable of measuring, displaying, and recording in real-time tractor-implement's geo-position in the field with respect to its measured performance. Static calibration tests on various associated transducers for the required measurements showed excellent linearity with correlation coefficients that are closed to 1. The developed system has been extensively and successfully field demonstrated for spatial mapping of tractor-implement field performance with a mounted disk plow on Serdang Series sandy clay loam soil. Elsevier 2009 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/7741/1/Mapping%20system%20for%20tractor-implement%20performance.pdf Yahya, Azmi and Bardaie, Muhamad Zohadie and Kheiralla, Abdelmotalab Fadlelmola and Gew, Soon Kiat and Ng, Eng Boon (2009) Mapping system for tractor-implement performance. Computers and Electronics in Agriculture, 69. pp. 2-11. ISSN 0168-1699 http://dx.doi.org/10.1016/j.compag.2009.06.010 10.1016/j.compag.2009.06.010 English
spellingShingle Yahya, Azmi
Bardaie, Muhamad Zohadie
Kheiralla, Abdelmotalab Fadlelmola
Gew, Soon Kiat
Ng, Eng Boon
Mapping system for tractor-implement performance
title Mapping system for tractor-implement performance
title_full Mapping system for tractor-implement performance
title_fullStr Mapping system for tractor-implement performance
title_full_unstemmed Mapping system for tractor-implement performance
title_short Mapping system for tractor-implement performance
title_sort mapping system for tractor implement performance
url http://psasir.upm.edu.my/id/eprint/7741/1/Mapping%20system%20for%20tractor-implement%20performance.pdf
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AT ngengboon mappingsystemfortractorimplementperformance