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Crop phenotype field high-flux active measuring apparatus and method

A technology of active measurement and crops, applied in the direction of measuring devices, optical devices, instruments, etc., can solve the problems of lack, inability to control the measured object, and not yet collected data, etc., to achieve good measurement results

Inactive Publication Date: 2016-05-04
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this method lacks the investigation of the actual agronomic environment in the field, and can only be used for the primary selection of large-scale germplasm materials, which is far from the goal of breeding high-yield and high-resistance varieties.
In addition, from the perspective of measurement methods, the above measurement methods are all passive measurements, unable to control the measured object, and have measurement limitations
[0006] At present, there is no description or report of the similar technology of the present invention, and no similar data at home and abroad have been collected yet.

Method used

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  • Crop phenotype field high-flux active measuring apparatus and method
  • Crop phenotype field high-flux active measuring apparatus and method

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Embodiment

[0053] This embodiment provides a high-throughput active field measurement device for crop phenotypes, including a truss, a manipulator module, a dark box, a light source module, a power supply module, an imaging sensor, a signal acquisition module, a PLC control module, and a host computer processing module; wherein:

[0054] The dark box and the manipulator module are respectively fixed on the truss, and the dark box is arranged between two adjacent manipulator modules;

[0055] The imaging sensor and the light source module are sequentially arranged in the dark box from top to bottom;

[0056] The PLC control module is respectively connected with the dark box and the manipulator module for controlling the movement of the dark box and the movement of the manipulator module;

[0057] The signal acquisition module is connected with the imaging sensor, and is used to amplify and convert the analog signal collected by the imaging sensor into a digital signal that can be received...

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Abstract

The invention provides a crop phenotype field high-flux active measuring apparatus and method. Field crops are planted at fixed points, and plant coordinates are recorded at the seedling period of the crops and are stored in a host computer processing module; in a crop maturation period, a PLC module controls a dark box to move somewhere above each crop through position information stored in the host computer processing module; when the dark box moves somewhere above each crop, the dark box moves downwards to cover the plant; manipulator modules move and respectively separate the crops to the two sides of the dark box, the dark box descends and shoots pictures through an imaging sensor, and the pictures are transmitted back to the host computer processing module after imaging; and the host computer processing module processes and analyzes the transmitted pictures so as to obtain and store field crop phenotype parameters. According to the invention, measurement realized by the apparatus and method belongs to active measurement. The apparatus and method have the advantages of high flux, high precision and high efficiency, thereby having wide application prospect.

Description

technical field [0001] The invention relates to the field of active measurement of agricultural imaging technology, in particular to a field high-throughput active measurement device and method for crop phenotypes with a manipulator. Background technique [0002] With the progress of society and the development of economy, people's demand for high-quality crops is becoming more and more urgent. The continuous growth of population has also brought good requirements for increasing the production of food crops (crops) such as rice and wheat. Therefore, the creation of new breeding technologies and targeted breeding of high-quality, high-yield, and multi-resistant crop varieties are of great theoretical and practical significance for ensuring high and stable grain yields and solving food security in my country and the world. Traditional breeding selection is inefficient, blind, and labor-intensive, mainly relying on manual work and experience, and there are many shortcomings. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01B11/00
CPCG01B11/00
Inventor 刘成良张经纬贡亮赵源深陈前里刘波张大兵袁政
Owner SHANGHAI JIAO TONG UNIV
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