使用AGV和自行设计的植物处理装置的植物运输系统的开发:DIY植物表型的案例研究。

IF 2 4区 农林科学 Q2 AGRONOMY Breeding Science Pub Date : 2022-03-01 Epub Date: 2022-02-17 DOI:10.1270/jsbbs.21070
Takanari Tanabata, Kunihiro Kodama, Takuyu Hashiguchi, Daisuke Inomata, Hidenori Tanaka, Sachiko Isobe
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引用次数: 3

摘要

近年来,植物表型技术得到了积极的发展,但由于对灵活性和低成本的需求,将这些技术引入农艺研究领域并没有取得预期的进展。“DIY”(自己动手)方法是克服这些障碍的有效方法。具有模块化功能的设备对DIY实验至关重要,允许研究人员灵活设计。在这项研究中,我们开发了一种植物运输系统,使用商用AGV(自动导引车)作为DIY植物表型的案例研究。输送模块由两个装置组成,一个运行装置和一个物料搬运装置。该运行装置是在商用AGV套件的基础上开发的。植物处理装置、植物支架和花盆附件最初是由我们和我们的同事设计和制造的。还开发了用于连接设备和操作系统的软件。运行路线是用磁带设置的,可以很容易地改变或重新路由。我们的植物输送系统开发成本低,灵活性高,作为一个单元,可以为其他“DIY”植物研究工作做出贡献,也可以为我们自己的研究工作做出贡献。期望所研制的装置将有助于温室植物表型的多样化观察,并在植物育种和农业生产中发挥其他重要作用。
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Development of a plant conveyance system using an AGV and a self-designed plant-handling device: A case study of DIY plant phenotyping.

Plant phenotyping technology has been actively developed in recent years, but the introduction of these technologies into the field of agronomic research has not progressed as expected, in part due to the need for flexibility and low cost. "DIY" (Do It Yourself) methodologies are an efficient way to overcome such obstacles. Devices with modular functionality are critical to DIY experimentation, allowing researchers flexibility of design. In this study, we developed a plant conveyance system using a commercial AGV (Automated Guided Vehicle) as a case study of DIY plant phenotyping. The convey module consists of two devices, a running device and a plant-handling device. The running device was developed based on a commercial AGV Kit. The plant-handling device, plant stands, and pot attachments were originally designed and fabricated by us and our associates. Software was also developed for connecting the devices and operating the system. The run route was set with magnetic tape, which can be easily changed or rerouted. Our plant delivery system was developed with low cost and having high flexibility, as a unit that can contribute to others' DIY' plant research efforts as well as our own. It is expected that the developed devices will contribute to diverse phenotype observations of plants in the greenhouse as well as to other important functions in plant breeding and agricultural production.

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来源期刊
Breeding Science
Breeding Science 农林科学-农艺学
CiteScore
4.90
自引率
4.20%
发文量
37
审稿时长
1.5 months
期刊介绍: Breeding Science is published by the Japanese Society of Breeding. Breeding Science publishes research papers, notes and reviews related to breeding. Research Papers are standard original articles. Notes report new cultivars, breeding lines, germplasms, genetic stocks, mapping populations, database, software, and techniques significant and useful for breeding. Reviews summarize recent and historical events related breeding. Manuscripts should be submitted by corresponding author. Corresponding author must have obtained permission from all authors prior to submission. Correspondence, proofs, and charges of excess page and color figures should be handled by the corresponding author.
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