拖拉机花生播种机缺种检测传感器系统的研制

IF 2.4 4区 农林科学 Q2 AGRICULTURAL ENGINEERING
M. Pati
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引用次数: 0

摘要

为了最大限度地减少花生种植过程中的漏种,研制了一种基于红外技术的拖拉机九行花生种植机红外传感系统。该系统可以检测通过种管掉落的花生种子的数量,并提供视觉和听觉指示丢失的种子(s)。实验结果表明,在2.5 km.h-1 ~ 3.5 km.h-1转速范围内,实际播种机播种量和显示读数的变化幅度为4.97% ~ 6.72%。种子率为118.53 kg。Ha-1在2.5公里,h-1, 100.10公斤。时速3.0公里,93.20公斤。Ha-1运行速度为3.5公里。在田间条件下,无传感器播种机在播种速度为2.5 km.h-1时失种率最低(22.60%),在播种速度为3.5 km.h-1时失种率最高(32.85%);而安装传感器系统的播种机在前进速度从2.5 km.h-1到3.5 km范围内,漏种率为5.92% ~ 10.84%。h1。因此,与播种机结合使用传感器装置后,种子丢失指数降低了16-22%。随着前进速度的增加,无论与播种机一起使用传感器,由于播种机振动加剧以及种子从种箱中的计量单元回落到种管中排放之前,种子率都有所下降。然而,使用传感器系统,没有观察到速度对种子率的显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Sensor System for Detection of Missing Seeds in a Tractor-operated Groundnut Planter
To minimize the missing seeds in groundnut planting, an Infra Red (IR) technology based sensor system was developed for a tractor drawn 9- row groundnut planter. This system could detect the number of groundnut seeds falling through a seed tube and provides visual and audible indications of missing drop(s). Laboratory evaluation of the planter with sensor system indicated that the variations of actual number of seeds dropped and display reading varied from 4.97% to 6.72% when operating speed varied from 2.5 km.h-1 to 3.5 km.h-1. The seed rates were 118.53 kg.ha-1 at 2.5 km.h-1, 100.10 kg.ha-1 at 3.0 km.h-1 and 93.20 kg.ha-1 at 3.5 km.h-1 operating speed. Under field condition, the planter without sensor system had lowest (22.60%) missing seeds at speed of 2.5 km.h-1, and highest (32.85%) missing seeds at higher speed of 3.5 km.h-1; while the planter with sensor system had 5.92% - 10.84% missing seeds with forward speed varying from 2.5 km.h-1 to 3.5 km.h1 . The missing index of seed thus, reduced by 16-22% with incorporation of the sensor device with the planter. With increase in forward speed, seed rate decreased irrespective of use of the sensor with the planter due to higher planter vibration as well as the seeds dropping back from the metering cells in the seed box before being discharged in seed tube. However, using the sensor system, no significant effect of speed on seed rate was observed.
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来源期刊
Journal of Agricultural Engineering
Journal of Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
2.30
自引率
5.60%
发文量
40
审稿时长
10 weeks
期刊介绍: The Journal of Agricultural Engineering (JAE) is the official journal of the Italian Society of Agricultural Engineering supported by University of Bologna, Italy. The subject matter covers a complete and interdisciplinary range of research in engineering for agriculture and biosystems.
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