WO2022170617A1 - 一种智能可视化农业作物良种选型系统 - Google Patents

一种智能可视化农业作物良种选型系统 Download PDF

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WO2022170617A1
WO2022170617A1 PCT/CN2021/076622 CN2021076622W WO2022170617A1 WO 2022170617 A1 WO2022170617 A1 WO 2022170617A1 CN 2021076622 W CN2021076622 W CN 2021076622W WO 2022170617 A1 WO2022170617 A1 WO 2022170617A1
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data
module
storage module
data processing
crops
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PCT/CN2021/076622
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French (fr)
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方芳
夏泽宇
夏钢
方宁
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苏州铭冠软件科技有限公司
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Priority to PCT/CN2021/076622 priority Critical patent/WO2022170617A1/zh
Publication of WO2022170617A1 publication Critical patent/WO2022170617A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers

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  • the invention belongs to the technical field of agricultural intelligent visualization, and in particular relates to an intelligent visualization system for selecting fine varieties of agricultural crops.
  • the present invention provides an intelligent visualization system for selecting improved varieties of agricultural crops that can efficiently obtain high-quality seeds.
  • the system can realize remote selection of good seeds by querying the information of crops on the client side of mobile devices, activate the agricultural crop selection market, and comprehensively track and record the growth information of crops to provide agricultural scientists with detailed crop information. , providing comprehensive data for the realization of optimal crop growth research.
  • An intelligent visualization system for selection of improved varieties of agricultural crops includes a crop-side data acquisition system, a data processing server, and a mobile terminal device;
  • the data acquisition system includes a visual detection device , the visual detection device communicates with the data processing server through the Internet, and the data processing server communicates with the mobile terminal device through the Internet.
  • the data acquisition system includes a visual detection device and an image storage module, and the image storage module is integrated in the visual detection device.
  • the visual detection device includes an intelligent visualization camera with automatic focusing and camera functions.
  • the image is collected and then stored in the image storage module; the image storage module automatically uploads the stored data to the data processing server through the Internet.
  • the data processing server is set as a personal computer or cloud server including an image processing module, a geographic information data processing module, an information matching module, a manual input module and an information storage module; the image processing module communicates with the image storage module, The geographic information data processing module communicates with the manual input module, and the manual input module uploads geographic information data, the information matching module communicates with the image processing module and the information storage module, and the information matching module transmits the crop data obtained by the image processing module to the information The storage module and the stored related data correspond to the crops one-to-one.
  • the image processing module is set as a computer with image processing, modification and editing functions.
  • the mobile terminal device includes a personal mobile phone, a tablet computer, and a computer capable of video display and data query.
  • the system records the data of crops in real time through the data processing server, and can record the growth status, growth environment, and agricultural operations of the crops in real time.
  • the operator provides the historical growth information of crops, and can guide the artificial agricultural operation according to the real-time growth status.
  • the system can realize remote selection of good seeds by querying the crop information on the client side of the mobile device, and the growth status of the crops can be provided to the customer remotely, and the customer can choose the good seeds of the crops.
  • the system can establish a data relationship on the growth state of crops and the factors that affect the growth of crops through the processing of data such as the growth state and growth environment of crops, manual operations, and geographic information by the server.
  • This data can be provided to agricultural researchers, through professional
  • the analysis can obtain the cultivation data of crop varieties.
  • FIG. 1 is a schematic diagram of the structure of the present invention.
  • An intelligent visual selection system for agricultural crop varieties includes a crop-side data acquisition system, a data processing server, and a mobile terminal device;
  • the data acquisition system includes a visual detection device, and the visual detection device communicates with the data processing server through the Internet , the data processing server communicates with the mobile terminal device through the Internet.
  • the data acquisition system includes a visual detection device and an image storage module, and the image storage module is integrated in the visual detection device.
  • the visual detection device includes an intelligent visualization camera with automatic focusing and camera functions.
  • the intelligent visualization camera collects images of the growth states of crops in different growth periods, as well as video recording and weather conditions of agricultural crops during the growth period. It is stored in the image storage module; the image storage module automatically uploads the stored data to the data processing server through the Internet.
  • the data processing server is set as a personal computer or a cloud server including an image processing module, an information matching module, a manual input module and an information storage module; the image processing module communicates with the image storage module, and the geographic information data processing module communicates with the manual input module.
  • Input module communication The manual input module uploads geographic information data, the information matching module communicates with the image processing module and the information storage module, and the information matching module transmits the crop data obtained by the image processing module to the information storage module, and the stored related data is the same as that of the information storage module. Crops correspond one by one.
  • the image processing module is set as a computer with the functions of image processing, modification and editing, which can modify and edit the various types of images and video data collected by the autofocus camera. Internet upload to a data processing server for further processing.
  • the mobile terminal equipment includes a personal mobile phone, a tablet computer, and a computer capable of video display and data query.
  • the data processing server is set as a computer that can comprehensively process different data, and selects, classifies and archives the images and video information uploaded by the image processing module through the information storage module;
  • the agricultural operation video information, geographic location, and weather information of the crop are stored corresponding to the crop.
  • the data of the data processing server mainly comes from: the image storage module, which is then uploaded automatically or manually by the image processing device; and other data uploaded by the manual module (other data uploaded by the manual module, including the weight, size, and color of the crops after maturity). etc., as well as growth environment, soil state information, weather, crop geographic information and other data), and other manually uploaded data are also matched and regularized by the information matching module, and then correspond to crops one by one.
  • Crop growth status thus, by querying the information of crops on the equipment client side, remote selection of good seeds can be realized, and the market of agricultural crop selection can be activated. information to provide comprehensive data for optimal crop growth research.
  • the query function of images and video data corresponding to crops one-to-one is provided by the mobile terminal.
  • the mobile terminal includes a personal computer, mobile phone, tablet computer, etc. with an operable display interface.
  • the mobile terminal communicates and interconnects with the data processing server through the Internet.
  • a call-out query is made to the data in the data processing server.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

一种智能可视化农业作物良种选型系统,包括作物端数据采集系统、数据处理服务器、移动终端设备;数据采集系统包括视觉探测装置和图像存储模块,图像存储模块集成在视觉探测装置中,视觉探测装置包括具有自动聚焦以及摄像照相功能的智能可视化照相机,智能可视化照相机进行图像采集进而存储在图像存储模块中,图像存储模块通过互联网自动上传其存储的数据至数据处理服务器。视觉探测装置通过互联网与数据处理服务器通信,数据处理服务器通过互联网与移动终端设备通信。系统通过在移动设备客户端对农作物的信息查询,可以实现远程的良种选型,为农业科学工作者提供详细的农作物信息,为实现优化农作物的生长研究提供全面的数据。

Description

一种智能可视化农业作物良种选型系统 技术领域
本发明属于农业智能可视化化技术领域,具体涉及一种智能可视化农业作物良种选型系统。
背景技术
农业作物在繁育过程中,良种是获得优质产品的重要因素。目前对良种的选择还主要靠人工完成,需要人力挑选农作物,容易增加作业人员的疲劳感;同从而耗费大量的人力物力,对农业生产产生较大的负担,降低了农作物人员的收入水平。而当前社会的农业作物人员已脱离传统面朝黄土背朝天的人力辛勤耕耘模式,他们已经感受并接受了当今网络技术在生活中广泛应用带来的各种优势。
因此,本领域技术人员有必要提供一种能够高效率获得优质良种的智能可视化农业作物良种选型系统,通过物联网对农作物的信息进行网上查询,并且可以通过生长数据对农作物的生长进行分析,获得优种的最佳生长条件,提高农业生产的生产效率。
技术问题 技术解决方案
针对上述现有技术中的不足,本发明提供了一种能够高效率获得优质良种的智能可视化农业作物良种选型系统。该系统通过在移动设备客户端对农作物的信息查询,可以实现远程的良种选型,活跃农业作物选种市场,同时对农作物的生长信息进行全面跟踪记录,为农业科学工作者提供详细的农作物信息,为实现优化农作物的生长研究提供全面的数据。
为实现上述目的,本发明采用了以下技术方案:   一种智能可视化农业作物良种选型系统,本系统包括作物端数据采集系统、数据处理服务器、移动终端设备;所述数据采集系统包括视觉探测装置,所述视觉探测装置通过互联网与数据处理服务器通信,数据处理服务器通过互联网与移动终端设备通信。
优选的,所述数据采集系统包括视觉探测装置和图像存储模块,所述图像存储模块集成在所述视觉探测装置中。
进一步的,所述视觉探测装置包括具有自动聚焦以及摄像照相功能的智能可视化照相机,所述智能可视化照相机通过对农作物不同生长时期的生长状态、以及在生长时期农业作物的视频摄录和天气情况进行图像采集进而存储在图像存储模块中;所述图像存储模块通过互联网自动上传其存储的数据至数据处理服务器。
进一步的,所述数据处理服务器设为包括图像处理模块、地理信息数据处理模块、信息匹配模块、人工输入模块以及信息存储模块的个人计算机或者云服务器;所述图像处理模块与图像存储模块通信,所述地理信息数据处理模块与人工输入模块通信由人工输入模块上传地理信息数据,所述信息匹配模块与图像处理模块、信息存储模块通信,信息匹配模块将图像处理模块得到的农作物数据传输至信息存储模块、且存储的相关数据与作物一一对应。
进一步的,所述图像处理模块设为具有图像处理、修饰、剪辑功能的计算机。
优选的,所述移动终端设备包括可视频显示和数据查询的个人手机、平板电脑、计算机。
有益效果
该系统通过数据处理服务器实时记录农作物的数据,可实时记录农作物的生长状态、生长环境、以及农业操作等情况,经过数据处理服务器的农作物信息被对应起来,并可一一调出查看 ,给农场作业人员提供农作物历史生长信息,可针对实时的生长状态进行人工农业操作的指导。
该系统通过在移动设备客户端对农作物信息的查询,可实现远程的良种选型,作物的生长状态远程提供给客户,客户可以优选的进行农作物的良种选择。
该系统通过服务器对农作物的生长状态和生长环境、 人工操作,地理信息等数据的处理,可以对农作物生长状态以及影响农作物生长的因素建立起数据关系,该数据可提供给农业研究人员,通过专业分析可以得到农作物良种的培养数据。
附图说明
图1为本发明的结构简示图。
本发明的实施方式
下面将结合本发明实施例中的附图,对本发明中的技术方案进行清楚、完整地描述。以下实施例仅用于更加清楚地说明本发明的技术方案,而不能以此来限制本发明的保护范围。
一种智能可视化农业作物良种选型系统,本系统包括作物端数据采集系统、数据处理服务器、移动终端设备;所述数据采集系统包括视觉探测装置,所述视觉探测装置通过互联网与数据处理服务器通信,数据处理服务器通过互联网与移动终端设备通信。
所述数据采集系统包括视觉探测装置和图像存储模块,所述图像存储模块集成在所述视觉探测装置中。
所述视觉探测装置包括具有自动聚焦以及摄像照相功能的智能可视化照相机,所述智能可视化照相机通过对农作物不同生长时期的生长状态、以及在生长时期农业作物的视频摄录和天气情况进行图像采集进而存储在图像存储模块中;所述图像存储模块通过互联网自动上传其存储的数据至数据处理服务器。
所述数据处理服务器设为包括图像处理模块、信息匹配模块、人工输入模块以及信息存储模块的个人计算机或者云服务器;所述图像处理模块与图像存储模块通信,所述地理信息数据处理模块与人工输入模块通信由人工输入模块上传地理信息数据,所述信息匹配模块与图像处理模块、信息存储模块通信,信息匹配模块将图像处理模块得到的农作物数据传输至信息存储模块、且存储的相关数据与作物一一对应。
所述图像处理模块设为具有图像处理、修饰、剪辑功能的计算机,可以对所述自动聚焦摄像机采集的各类图像、视频数据进行修改、剪辑等清晰化处理,修改后的图像和视频数据通过互联网上传至数据处理服务器进行进一步处理。
所述移动终端设备包括可视频显示和数据查询的个人手机、平板电脑、计算机。
下面结合具体选型过程对本系统作出如下的详细说明。
所述数据处理服务器设为可以对不同数据进行综合处理的计算机,通过信息存储模块对由图像处理模块上传的图像、视频信息进行选择、分类、归档处理;信息匹配模块把农作物的生长状态信息与该农作物的农业操作视频信息以及地理位置、天气信息对应该农作物存储。其中,数据处理服务器的数据主要来源于:图像存储模块、再由图像处理装置自动或者人工上传;以及人工模块上传的其他数据(人工模块上传的其他数据,包括作物成熟后的重量、大小、颜色等,以及生长环境、土壤状态信息、天气、农作物地理信息等数据),人工上传的其他数据,也由信息匹配模块进行匹配和规整处理后,与农作物一一对应。
针对某一农作物,其相关的图像、视频、以及其他生长数据全部由数据处理服务器进行处理并且储存,这些数据与作物一一对应,可以从作物查询到其生长的相关信息,也可由生长信息查询作物生长情况;从而通过在设备客户端对农作物进行信息查询,实现远程的良种选型,活跃农业作物选种市场,同时对农作物的生长信息进行全面跟踪记录,为农业科学工作者提供详细的农作物信息,为实现优化农作物的生长研究提供全面的数据。
与农作物一一对应的图像、视频数据的查询功能由移动终端提供,移动终端包括具有可操作的显示界面的个人计算机、手机、平板电脑等,移动终端通过互联网与数据处理服务器通信互连,能够对数据处理服务器中的数据进行调出查询。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和变形,这些改进和变形也应视为本发明的保护范围。

Claims (6)

  1. 一种智能可视化农业作物良种选型系统,其特征在于:本系统包括作物端数据采集系统、数据处理服务器、移动终端设备;所述数据采集系统包括视觉探测装置,所述视觉探测装置通过互联网与数据处理服务器通信,数据处理服务器通过互联网与移动终端设备通信。
  2. 根据权利要求1所述的一种基于互联网的农业作物良种选型系统,其特征在于:所述数据采集系统包括视觉探测装置和图像存储模块,所述图像存储模块集成在所述视觉探测装置中。
  3. 根据权利要求2所述的一种智能可视化农业作物良种选型系统,其特征在于:所述视觉探测装置包括具有自动聚焦以及摄像照相功能的智能可视化照相机,所述智能可视化照相机通过对农作物不同生长时期的生长状态、以及在生长时期农业作物的视频摄录和天气情况进行图像采集进而存储在图像存储模块中;所述图像存储模块通过互联网自动上传其存储的数据至数据处理服务器。
  4. 根据权利要求3所述的一种智能可视化农业作物良种选型系统,其特征在于:所述数据处理服务器设为包括图像处理模块、地理信息数据处理模块、信息匹配模块、人工输入模块以及信息存储模块的个人计算机或者云服务器;所述图像处理模块与图像存储模块通信,所述地理信息数据处理模块与人工输入模块通信由人工输入模块上传地理信息数据,所述信息匹配模块与图像处理模块、信息存储模块通信,信息匹配模块将图像处理模块得到的农作物数据传输至信息存储模块、且存储的相关数据与作物一一对应。
  5. 根据权利要求4所述的一种智能可视化农业作物良种选型系统,其特征在于:所述图像处理模块设为具有图像处理、修饰、剪辑功能的计算机。
  6. 根据权利要求1所述的一种智能可视化农业作物良种选型系统,其特征在于:所述移动终端设备包括可视频显示和数据查询的个人手机、平板电脑、计算机。
PCT/CN2021/076622 2021-02-11 2021-02-11 一种智能可视化农业作物良种选型系统 WO2022170617A1 (zh)

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