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Development and implementation of an IOT based instrumentation system for computing performance of a tractor-implement system

机译:基于物联网仪器仪器仪表系统的开发与实现牵引系统的性能

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摘要

A high precision and compact IOT based digital instrumentation setup to measure, display and record various tractor and implement system performance parameters was developed and installed on a 28.3 kW Tractor. The setup was capable of continuous monitoring and wirelessly transmitting tractor implement performance parameters on a cloud platform such as engine speed, radiator fan speed, fuel consumption, draft, forward speed, lift arm angle, wheel slip, wheel slip, PTO speed, geo-location/ position of the tractor, choking of seeds in the implement and vibrations experienced by the implement. For precision measurements, commercial transducers used in the system were calibrated and assessed under both static and dynamic conditions. The average calibration constant for fuel consumption, forward speed, lift arm angle and load cell were 0.00009804 L/pulse, 0.01610306 km/h/pulse, 0.056 mA/degree and 0.2575 mV/kN respectively. The system based on DataTaker DT 85 Data logger connected to a micro-computer through transducers capable of transferring data wirelessly was installed on John Deere 5038 tractor and was tested with a Spatially Modified No-Till Drill in agricultural field with varied implement depth. (c) 2021 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:基于高精度和基于紧凑的IOT的数字仪表设置,用于测量,显示和记录各种拖拉机并开发系统性能参数,并安装在28.3 kW拖拉机上。设置能够在云平台上连续监控和无线传输拖拉机在云平台上实现性能参数,例如发动机速度,散热器风扇速度,燃料消耗,稿,前进速度,提升臂角度,轮滑,轮滑,PTO速度,地理 - 拖拉机的位置/位置,种子在工具中的种子窒息和振动。为了精确测量,系统中使用的商业传感器被校准并在静态和动态条件下进行评估。燃料消耗,前进速度,提升臂角度和称重电池的平均校准常数为0.00009804L /脉冲,0.01610306 km / h /脉冲,分别为0.056 mA /尺度和0.2575 mV / kn。基于Datatak DT 85数据记录器通过能够无线传输数据的传感器连接到微计算机的数据记录器,并在John Deere 5038拖拉机上安装了经过各种工具深度的农业领域的空间改造的无线钻头测试。 (c)2021 istvs。 elsevier有限公司出版。保留所有权利。

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