Digital Wireless Technology to Measure Agricultural Performance

When testing agricultural machinery in order to determine its functional indicators, the ability to wirelessly transmit data between sensors, measuring and information systems are important. (Research purpose) To develop methods and create wireless digital devices for determining the functional indi...

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Main Authors: V. F. Fedorenko, V. E. Tarkivskiy
Format: Article
Language:Russian
Published: Federal Scientific Agroengineering Centre VIM 2020-03-01
Series:Сельскохозяйственные машины и технологии
Subjects:
Online Access:https://www.vimsmit.com/jour/article/view/361
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author V. F. Fedorenko
V. E. Tarkivskiy
author_facet V. F. Fedorenko
V. E. Tarkivskiy
author_sort V. F. Fedorenko
collection DOAJ
description When testing agricultural machinery in order to determine its functional indicators, the ability to wirelessly transmit data between sensors, measuring and information systems are important. (Research purpose) To develop methods and create wireless digital devices for determining the functional indicators of agricultural tractors and machines with the ability to wirelessly transmit data to a remote control point in real time. (Materials and methods) The authors assumed that it was possible to determine the slipping of driving wheels using an inertial navigation system. It was found that in order to calculate real-time indicators obtained using wireless technologies, it was necessary to determine the characteristics of the input signals of discrete sensors on the side of the measuring system. (Results and discussions) The authors substantiated a method for determining the period of incoming signals of discrete sensors with an accuracy of 0.001 seconds for wireless information transmission. They proposed the design of a slipping sensor for an energy vehicle driving wheels, the main element of which is an inertial wheel position sensor. They developed a discrete signal input module and an inertial slipping sensor with the possibility of wireless data transmission based on a radio system with a carrier frequency of 433 megahertz. During field tests, it was found that the accuracy of determining slippage using the inertial wireless sensor IP-291 does not exceed 1 percent; the range of stable radio communication from the tested object to the test control center reaches 1000 meters; the current indicators obtained through digital radio communication did not differ from the indicators obtained in the tractor cab. (Conclusions) The authors worked out an effective system for wireless information transfer with the ability to calculate the performance of the tested equipment in real time.
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institution Kabale University
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publisher Federal Scientific Agroengineering Centre VIM
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series Сельскохозяйственные машины и технологии
spelling doaj-art-e9c031f032ee4cdaae3f89d7a74553582025-08-20T03:56:27ZrusFederal Scientific Agroengineering Centre VIMСельскохозяйственные машины и технологии2073-75992020-03-01141101510.22314/2073-7599-2020-14-1-10-15318Digital Wireless Technology to Measure Agricultural PerformanceV. F. Fedorenko0V. E. Tarkivskiy1Federal Scientific Agroengineering Center VIMNovokubansk branch of the Russian Research Institute of Information and Technical and Economic Studies on Engineering and Technical Provision of Agro-Industrial ComplexWhen testing agricultural machinery in order to determine its functional indicators, the ability to wirelessly transmit data between sensors, measuring and information systems are important. (Research purpose) To develop methods and create wireless digital devices for determining the functional indicators of agricultural tractors and machines with the ability to wirelessly transmit data to a remote control point in real time. (Materials and methods) The authors assumed that it was possible to determine the slipping of driving wheels using an inertial navigation system. It was found that in order to calculate real-time indicators obtained using wireless technologies, it was necessary to determine the characteristics of the input signals of discrete sensors on the side of the measuring system. (Results and discussions) The authors substantiated a method for determining the period of incoming signals of discrete sensors with an accuracy of 0.001 seconds for wireless information transmission. They proposed the design of a slipping sensor for an energy vehicle driving wheels, the main element of which is an inertial wheel position sensor. They developed a discrete signal input module and an inertial slipping sensor with the possibility of wireless data transmission based on a radio system with a carrier frequency of 433 megahertz. During field tests, it was found that the accuracy of determining slippage using the inertial wireless sensor IP-291 does not exceed 1 percent; the range of stable radio communication from the tested object to the test control center reaches 1000 meters; the current indicators obtained through digital radio communication did not differ from the indicators obtained in the tractor cab. (Conclusions) The authors worked out an effective system for wireless information transfer with the ability to calculate the performance of the tested equipment in real time.https://www.vimsmit.com/jour/article/view/361agricultural machinery testsagricultural machinetractorslipping sensorinertial navigationdigital communication channel
spellingShingle V. F. Fedorenko
V. E. Tarkivskiy
Digital Wireless Technology to Measure Agricultural Performance
Сельскохозяйственные машины и технологии
agricultural machinery tests
agricultural machine
tractor
slipping sensor
inertial navigation
digital communication channel
title Digital Wireless Technology to Measure Agricultural Performance
title_full Digital Wireless Technology to Measure Agricultural Performance
title_fullStr Digital Wireless Technology to Measure Agricultural Performance
title_full_unstemmed Digital Wireless Technology to Measure Agricultural Performance
title_short Digital Wireless Technology to Measure Agricultural Performance
title_sort digital wireless technology to measure agricultural performance
topic agricultural machinery tests
agricultural machine
tractor
slipping sensor
inertial navigation
digital communication channel
url https://www.vimsmit.com/jour/article/view/361
work_keys_str_mv AT vffedorenko digitalwirelesstechnologytomeasureagriculturalperformance
AT vetarkivskiy digitalwirelesstechnologytomeasureagriculturalperformance