一种新型甘蔗收获拖拉机维护与性能监测嵌入式监测系统的设计

E. Rijanto, Erik Adiwiguna, Aryo Putro Sadono, M. H. Nugraha, Oka Mahendra, R. Firmansyah
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引用次数: 2

摘要

在现代甘蔗农场中,甘蔗切碎收获机正被广泛使用。现代甘蔗切碎收获机本质上是一个机电一体化系统,由拖拉机和一些带有多个电液控制系统的机具组成。这些控制系统由电子控制器单元(ECU)控制。由于缺乏维护、操作员的意识、技能和田地轮廓,它可能会在收割操作中失败。本文提出了一种新的嵌入式监测系统的设计,用于实时监测甘蔗切碎收获机的维护和生产性能。开发了嵌入式监控系统的原型,部分实现了所设计的系统。实验结果表明,主计算机可以使用控制器局域网(CAN)总线与其他ECU进行通信。从CAN总线检索的四个通道的数据集表示源自温度传感器模拟器的真实值。除了发送到CAN总线,数据还记录在安全数字(SD)卡上,并发送到物联网(IoT)服务器。在更新时间间隔测试中,100毫秒的间隔不会产生任何错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new design of embedded monitoring system for maintenance and performance monitoring of a cane harvester tractor
In modern sugarcane farms, sugarcane chopper harvesters are becoming widely used. A modern sugarcane chopper harvester is essentially a mechatronic system composed of a tractor and some implements with several electro-hydraulic control systems. Those control systems are controlled by electronic controller units (ECUs). It may fail during harvesting operation due to lack of maintenance, operator's awareness, skill, and field contour. This paper presents a new design of an embedded monitoring system for maintenance and production performance monitoring of a sugarcane chopper harvester in a real-time manner. A prototype of the embedded monitoring system was developed which partially realized the designed system. The experimental result showed that the main computer could communicate with other ECUs using a controller area network (CAN) bus. The dataset from four channels retrieved from the CAN bus represents the real values originating from the temperature sensor simulators. Apart from being sent to the CAN bus, the data are also recorded on a secure digital (SD) Card and sent to the internet of things (IoT) server. In the update time interval testing, the 100 ms interval does not give any error.
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CiteScore
0.70
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