HMI-assisted visual interface-cum-embedded system for measurement of tractor–implement performance parameters

IF 4.2 2区 计算机科学 Q2 ROBOTICS Journal of Field Robotics Pub Date : 2023-06-22 DOI:10.1002/rob.22221
Prateek Shrivastava, V. K. Tewari, Chanchal Gupta, Arjurn Chouriya
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Abstract

A human–machine interface (HMI)-based visual interface along with an embedded system was developed to real-time measure, display, and store the various tractor–implement performance parameters, that is, geoposition, depth, speed, slip, fuel consumption, draft, and power take-off (PTO) torque. The developed system consists of various commercially available (global positioning system, rotary potentiometer, tension/compression load cell, Hall-effect sensor, flow meter, and strain gauge) sensors/transducers to measure the performance parameters. A strain-gauge-based special type of transducer was also developed for measuring the PTO torque acting on the implement and the output of the transducer was transferred to the virtual interface-based data acquisition system using radio frequency-based modules. Along with the sensors, the developed system is composed of a microcontroller to process the data received from sensors, an HMI-assisted smart touch screen to display the output, and a secure digital card module to store the processed data. The developed visual interface of the embedded system comprises multiple operator-friendly touch screens and each screen was designed with a graphical user interface for the visual presentation of the tractor–implement performance parameters. The system was installed in the TAFE Samrat 4410 tractor and tested under various field operations. Sensors employed in the system were calibrated for obtaining precise measurement, and excellent linearity with a high correlation between actual and measured variables. Under various field operations (plowing and tillering), a maximum error of 15% (except PTO torque) was found between parameters measured with the developed system and manual/predicted measurement. The field results fortify the acceptable accuracy of the developed system. The developed system will be helpful for researchers or students to study the matching of tractor–implement combinations.

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用于测量拖拉机-机具性能参数的HMI辅助视觉接口和嵌入式系统
开发了一个基于人机界面(HMI)的可视化界面和一个嵌入式系统,用于实时测量、显示和存储拖拉机的各种性能参数,即地理位置、深度、速度、滑移、油耗、牵引力和动力输出(PTO)扭矩。所开发的系统由各种市售传感器/变送器(全球定位系统、旋转电位计、拉伸/压缩称重传感器、霍尔效应传感器、流量计和应变计)组成,用于测量性能参数。此外,还开发了一种基于应变计的特殊传感器,用于测量作用在机具上的 PTO 扭矩,传感器的输出通过基于射频的模块传输到基于虚拟接口的数据采集系统。除传感器外,所开发的系统还包括一个用于处理从传感器接收到的数据的微控制器、一个用于显示输出的人机界面辅助智能触摸屏和一个用于存储所处理数据的安全数字卡模块。所开发的嵌入式系统可视化界面由多个便于操作的触摸屏组成,每个屏幕都设计有图形用户界面,用于直观地显示拖拉机的性能参数。该系统安装在 TAFE Samrat 4410 拖拉机上,并在各种田间作业中进行了测试。系统中使用的传感器经过校准,测量精确,线性度好,实际变量与测量变量之间的相关性高。在各种田间作业(耕地和分蘖)中,发现使用所开发系统测量的参数与人工/预测测量值之间的最大误差为 15%(PTO 扭矩除外)。田间结果证明了所开发系统的准确性是可以接受的。开发的系统将有助于研究人员或学生研究拖拉机与机具组合的匹配问题。
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来源期刊
Journal of Field Robotics
Journal of Field Robotics 工程技术-机器人学
CiteScore
15.00
自引率
3.60%
发文量
80
审稿时长
6 months
期刊介绍: The Journal of Field Robotics seeks to promote scholarly publications dealing with the fundamentals of robotics in unstructured and dynamic environments. The Journal focuses on experimental robotics and encourages publication of work that has both theoretical and practical significance.
期刊最新文献
Issue Information Cover Image, Volume 41, Number 8, December 2024 Issue Information ForzaETH Race Stack—Scaled Autonomous Head‐to‐Head Racing on Fully Commercial Off‐the‐Shelf Hardware Research on Satellite Navigation Control of Six‐Crawler Machinery Based on Fuzzy PID Algorithm
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