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关于嵌入式系统在智能农机上的应用研究

孙百惠

孙百惠. 关于嵌入式系统在智能农机上的应用研究[J]. 农机使用与维修, 2024, (7): 78-80. DOI: 10.14031/j.cnki.njwx.2024.07.021
引用本文: 孙百惠. 关于嵌入式系统在智能农机上的应用研究[J]. 农机使用与维修, 2024, (7): 78-80. DOI: 10.14031/j.cnki.njwx.2024.07.021
SUN Bai-hui. Application Research of Embedded System in Intelligent Agricultural Machine[J]. Agricultural Machinery Using & Maintenance, 2024, (7): 78-80. DOI: 10.14031/j.cnki.njwx.2024.07.021
Citation: SUN Bai-hui. Application Research of Embedded System in Intelligent Agricultural Machine[J]. Agricultural Machinery Using & Maintenance, 2024, (7): 78-80. DOI: 10.14031/j.cnki.njwx.2024.07.021

关于嵌入式系统在智能农机上的应用研究

详细信息
    作者简介:

    孙百惠(1986—),女,黑龙江穆棱人,学士,工程师,研究方向为农业信息化

  • 中图分类号: S24

Application Research of Embedded System in Intelligent Agricultural Machine

  • 摘要: 研究在智能农机领域中嵌入式系统的国内外应用现状。通过我国应用的具体实例,指出了嵌入式系统在智能农机应用上的作用。探讨了嵌入式系统在智能农机应用领域的未来发展走向,重点分析技术革新、智能化升级、环境适应性、数据驱动决策支持等方面。经综合分析可以得出,嵌入式系统将在推动智能农机技术创新、促进农业可持续发展方面发挥核心作用。
    Abstract: The application status of embedded system in the field of intelligent agricultural machinery at home and abroad is studied. The role of embedded system in the application of intelligent agricultural machinery is pointed out through a concrete example in our country. The future development trend of embedded system in the field of intelligent agricultural machinery application is discussed, focusing on technical innovation, intelligent upgrading, environmental adaptability, data-driven decision support and so on. Through comprehensive analysis, it can be concluded that the embedded system will play a central role in promoting the innovation of intelligent agricultural machinery technology and promoting the sustainable development of agriculture.
  • [1]

    HONG M,AHN H,ATIF O,et al.Field-applicable pig anomaly detection system using vocalization for embedded board implementations[J].Applied Sciences,2020,10(19):6991.

    [2]

    SEO J,AHN H,KIM D,et al.EmbeddedPigDet—Fast and accurate pig detection for embedded board implementations[J].Applied Sciences,2020,10(8):2878.

    [3]

    BASSO M,STOCCHERO D,VENTURA BAYAN HENRIQUES R,et al.Proposal for an embedded system architecture using a GNDVI algorithm to support UAV-based agrochemical spraying[J].Sensors,2019,19(24):5397.

    [4]

    HUANG J,ZHANG H F.The research on intelligent agricultural information monitoring system based on embedded platform[J].Advanced Materials Research,2014,898:594-597.

    [5]

    YIN Y X,TAN Y,WANG S M.Research of remote monitor system for agriculture equipment based on embedded system and wireless network[J].Advanced Materials Research,2013,753/754/755:3181-3184.

    [6] 梁硕,魏纯.基于嵌入式模块的拖拉机自动滑行系统研究[J].农机化研究,2022,44(12):257-260+268.
    [7] 彭开勤.基于嵌入式控制的农机自动驾驶系统布局研究[J].农机化研究,2022,44(4):265-268.
    [8] 韩卓儒.基于嵌入式系统的植保机变流量喷药控制器研究[D].沈阳:沈阳工业大学,2021.
    [9] 王淏,张小义,亢娟娜,等.嵌入式温室大棚温度自动控制系统设计[J].现代农业科技,2021(13):159-160.
    [10] 张晨光,黄兆波,范世达,等.基于嵌入式LoRa集成网关的温室测控系统的设计与实现[J].现代电子技术,2022,45(4):61-67.
    [11] 杨东轩,张建伟,张刚刚,等.中小规模禽舍适用的无线环境监控系统设计[J].中国农机化学报,2022,43(1):122-127.
    [12] 付少华,兰壬庚,李伟,等.智慧农业灌溉系统的设计与实现[J].节水灌溉,2022(2):71-74.
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出版历程
  • 刊出日期:  2024-07-09

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