初步评估在马来西亚平坦地形上使用自动驾驶拖拉机的可能性

The Planter Pub Date : 2019-02-25 DOI:10.56333/tp.2019.002
M. H. Hamdan, D. E. Pebrian
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引用次数: 2

摘要

目前,现代拖拉机采用自动驾驶转向系统已成为拖拉机操作系统中的经典模式之一。然而,对这一制度在不同于其原产国的地区的专门评估是值得进一步研究的重点。因此,本初步研究旨在评估自动驾驶拖拉机在马来西亚平坦地形条件下以各种指定速度运行的直线精度。在马六甲Jasin的UiTM (Universiti teknologii MARA)农场,对配备自动驾驶机构的新型拖拉机在长满草的平坦地形上进行了评估。这种自动化技术可以在驾驶拖拉机时为操作人员提供高精度转向,并提高现场的安全性。选取自动驾驶拖拉机发动机转速1000 rpm、1500 rpm、2000 rpm三个等级(相当于3.4、4.2、5.5 km / h)作为评估拖拉机直线精度的参数。本研究发现,各测试速度的直线精度存在显著差异。结果还表明,被测速度与直线精度之间存在一定的关系。因此,值得进一步评价它在某些外地行动中的作用。关键词:农业机械,自动驾驶拖拉机,自动导向,自动转向,机械化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PRELIMINARY ASSESSMENT ON THE POTENTIAL FOR USE OF AN AUTOPILOT TRACTOR ON MALAYSIA’S FLAT TERRAIN
Currently modern tractor with autopilot steering system has become one of the classy modes in tractor operations system. However, specialized assessment of this system on areas, which are different from its county of origin are of prime interest to be further investigated. Therefore, this preliminary study was conducted to assess the straight-line accuracy of autopilot tractor running at various specified levels of speed on Malaysia’s flat terrain conditions. The new tractor equipped with an autopilot mechanism was evaluated on flat terrain that was overgrown with grasses at the UiTM (Universiti Teknologi MARA) farm in Jasin, Melaka. This automation is employed to offer high-accuracy steering for the operator while driving a tractor and improve safety in the field. Three levels of autopilot tractor engine speeds, i.e. 1000 rpm, 1500 rpm, 2000 rpm (equivalent to 3.4, 4.2, 5.5 km per hour speed) were selected as the parameters in assessing straight-line accuracy of the tractor. This study found that there is a significant difference between straight-line accuracy of each of the tested speeds. It also showed that there is a relationship between the tested speeds and straight-line accuracy. Thus is it worthwhile to pursue further evaluation of its usefulness in selected field operations. Keyword: Farm machinery, autopilot tractor, auto-guidance, auto-steering, mechanisation.
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