Design and experiment of a control system for sweet potato seedling feeding and planting device based on pretreatment seedling belt

IF 2.4 4区 农林科学 Q2 AGRICULTURAL ENGINEERING Journal of Agricultural Engineering Pub Date : 2022-06-30 DOI:10.4081/jae.2022.1261
Yufan He, Qingzhen Zhu, Weiqiang Fu, Changhai Luo, Yue Cong, Wuchang Qin, Zhijun Meng, Liping Chen, Chunjiang Zhao, Guangwei Wu
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Abstract

Although existing sweet potato transplanters require automatic seedling feeding instead of manual seedling feeding, this causes seedling leakage and low efficiency. In this work, a control system for automatic seedling feeding of sweet potatoes was designed based on a pretreatment seedling belt. The system uses STM32 as the main controller and obtains the running speed of the machine through the encoder. The speed of the planting motor can be adjusted in real-time according to the running speed to keep the planting distance stable. The speed control model and linkage control strategy of seedling feeding and planting motors are investigated to keep the system feeding frequency and planting frequency consistent under running speed change. In order to verify the performance of this control system, a test bench was built, and some experiments were conducted. The test results show that the average error of seedling feeding motor speed is 4.04%, and that of planting motor speed is 3.28%. At medium and low operating speed levels, the stability of the seedling feeding mechanism is good, and the relative errors of automatic seedling feeding operation are 7.8% and 5.1%, respectively. The variation coefficients of plant spacing were 9.34% and 7.42%, respectively, indicating that the system could meet the seedling feeding and planting device control requirements based on the seedling belt and realize continuous automatic seedling feeding in the process of sweet potato seedling transplanting.
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一种基于预处理育苗带的甘薯育苗装置控制系统的设计与试验
虽然现有的红薯移栽机需要自动育苗,而不是人工育苗,但这造成了漏苗,效率低。本文设计了一种基于预处理育苗带的红薯自动育苗控制系统。该系统采用STM32作为主控制器,通过编码器获取机器的运行速度。种植电机转速可根据运行速度实时调整,保持种植距离稳定。为了在运行转速变化的情况下保持系统的喂苗频率和播种频率一致,研究了喂苗和播种电机的调速模型和联动控制策略。为了验证该控制系统的性能,搭建了试验台,并进行了实验研究。试验结果表明,喂苗电机转速的平均误差为4.04%,播种电机转速的平均误差为3.28%。在中低运行速度水平下,投苗机构稳定性较好,自动投苗操作的相对误差分别为7.8%和5.1%。株距变异系数分别为9.34%和7.42%,说明该系统能够满足基于育苗带的育苗和育苗装置控制要求,实现甘薯插秧过程中连续自动育苗。
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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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