Development of a universal plug tray seeder for small seeds based on electrostatic adsorption

IF 7.7 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Computers and Electronics in Agriculture Pub Date : 2024-11-13 DOI:10.1016/j.compag.2024.109651
Xinting Ding , Wei Hao , Kui Liu , Binbin Wang , Zhi He , Weixin Li , Yongjie Cui , Qichang Yang
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Abstract

Addressing the limitations of the traditional air suction plug tray seeder regarding versatility, clogging, noise, and energy consumption, a novel plug tray seeding method suitable for a broader range of small seed sizes has been proposed. A universal plug tray seeder has also been designed based on electrostatic adsorption for small seeds. Key factors affecting seed electrostatic adsorption were analyzed through electrostatic simulation, determining the optimal manufacturing method for the suction needle and the best range for the electrostatic voltage. Leveraging the theory of granular dynamics, a seed vibration box was designed using the principle of microphone vibration to enhance seed flowability and reduce the multiple seeding rate. Furthermore, the control system achieved seed recognition based on YOLOv8n and adaptive matching of seeding parameters, enhancing the universality of the seeder. The seeder was optimized and validated through practical experiments, with a comparative analysis of energy consumption and sound intensity conducted. The results indicated that the electrostatic suction needle, made with a single copper electrode of 1 mm diameter and coated with a 1 mm thick planar epoxy resin adsorption layer, along with an electrostatic voltage of 5 ∼ 10 kV, could effectively adsorb seeds. The vibration box significantly improved the seeding effect by vibrating seeds of tomato, pepper, and muskmelon at frequencies of 10 ∼ 25 Hz, and seeds of broccoli, cabbage, and eggplant at frequencies of 30 ∼ 50 Hz. The combined action of the electrostatic suction needle and the vibrating seed box resulted in an 83.20 % reduction in energy consumption and a significant decrease in sound intensity. Although the single seeding rate for muskmelon and cabbage seeds slightly decreased due to higher rates of leakage seeding and multiple seeding, the single seeding rate for other seeds remained around 90 %. This study provides a theoretical foundation for the universal seeding method of small seeds and offers significant reference value for the design of low-energy, low-noise plug tray seeders.
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开发基于静电吸附的小粒种子通用塞盘播种机
针对传统气吸式塞盘播种机在多功能性、堵塞、噪音和能耗方面的局限性,提出了一种适用于更多小粒种子的新型塞盘播种方法。此外,还设计了一种基于静电吸附的通用塞盘式播种机,适用于小粒种子。通过静电模拟分析了影响种子静电吸附的关键因素,确定了吸针的最佳制造方法和静电电压的最佳范围。利用颗粒动力学理论,利用麦克风振动原理设计了种子振动箱,以提高种子流动性并降低多次播种率。此外,控制系统实现了基于 YOLOv8n 的种子识别和播种参数的自适应匹配,增强了播种机的通用性。通过实际实验对播种机进行了优化和验证,并对能耗和声强进行了对比分析。结果表明,静电吸针由直径 1 毫米的单个铜电极制成,表面涂有 1 毫米厚的平面环氧树脂吸附层,静电电压为 5 ∼ 10 千伏,可有效吸附种子。通过振动箱以 10 ∼ 25 Hz 的频率振动番茄、辣椒和麝香瓜的种子,以及以 30 ∼ 50 Hz 的频率振动西兰花、卷心菜和茄子的种子,播种效果得到了明显改善。在静电吸针和振动种子箱的共同作用下,能耗降低了 83.20%,声音强度也显著降低。虽然麝香瓜和卷心菜种子的单次播种率因漏种率和多次播种率较高而略有下降,但其他种子的单次播种率仍保持在 90% 左右。这项研究为小粒种子的通用播种方法提供了理论依据,并为低能耗、低噪音塞盘式播种机的设计提供了重要参考价值。
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来源期刊
Computers and Electronics in Agriculture
Computers and Electronics in Agriculture 工程技术-计算机:跨学科应用
CiteScore
15.30
自引率
14.50%
发文量
800
审稿时长
62 days
期刊介绍: Computers and Electronics in Agriculture provides international coverage of advancements in computer hardware, software, electronic instrumentation, and control systems applied to agricultural challenges. Encompassing agronomy, horticulture, forestry, aquaculture, and animal farming, the journal publishes original papers, reviews, and applications notes. It explores the use of computers and electronics in plant or animal agricultural production, covering topics like agricultural soils, water, pests, controlled environments, and waste. The scope extends to on-farm post-harvest operations and relevant technologies, including artificial intelligence, sensors, machine vision, robotics, networking, and simulation modeling. Its companion journal, Smart Agricultural Technology, continues the focus on smart applications in production agriculture.
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