EP3107367B1

Method and system for in-situ precision calibration of a precision agricultural system to accommodate for a treatment delay

Abstract

This record has no abstract on file.

EP3107367B1, drawing sheet 1
Sheet 1 of 11

Term

8.4 yearsleft in the term

Expires 23 February 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

15 claims: 2 independent, 13 dependent

  1. 1
    A method for in-situ precision calibration of a precision agricultural system (100) during operation of the precision agricultural system (100) within a field (20) to accommodate for a treatment delay, the method comprising:capturing a first image (222) of a first field region (224) with a first camera (200) of the precision agricultural system (100);locating a target treatment boundary location (710) in the first field region (224) based on the first image (222), the target treatment boundary location (710) located between a first treatment region where a first treatment is assigned and a second treatment region where a second treatment is assigned;determining, based on a velocity of the precision agricultural system (100) and a target distance (706) between an instantaneous treatment mechanism location and the target treatment boundary location (710) and/or determining, based on a height of the first camera (200) from the ground, a transition time for a treatment mechanism (700) to switch from the first treatment to the second treatment at the target boundary location (710) between the first treatment region and the second treatment region;controlling a treatment mechanism (700) of the precision agricultural system (100) to apply the first treatment to a target in the first treatment region;subsequent to applying the first treatment, capturing a second image (822) of a second field region (824) with a second camera (800) of the precision agriculture system (100) after the transition time, wherein both the first and second image (222, 822) comprise a reference feature (702);determining a difference in position between an actual treatment boundary location (720) and the target treatment boundary location (710) by comparing both the actual treatment boundary location (720) and the target treatment boundary location (710) to the reference feature (702);calculating a calibration factor based on the difference between the actual treatment boundary location (720) and the target treatment boundary location (710);and calibrating the treatment mechanism (700) to accommodate for the treatment delay using the calibration factor.
  2. 15
    A precision agriculture system (100) for in-situ precision agriculture calibration during operation of the precision agriculture system (100) within a field (20) to accommodate for a treatment delay, the precision agriculture system (100) comprising:a first camera (200);a second camera;a treatment mechanism (700);a processor;and a computer-readable medium comprising instructions that, when executed, cause the processor to: capture a first image (222) of a first field region (224) with the first camera (200) of the precision agricultural system (100);locate a target treatment boundary location (710) in the first field region (224) based on the first image (222), the target treatment boundary location (710) located between a first treatment region where a first treatment is assigned and a second treatment region where a second treatment is assigned;determine, based on a velocity of the precision agricultural system (100) and a target distance (706) between an instantaneous treatment mechanism location and the target treatment boundary location (710) and/or determine, based on a height of the first camera (200) from the ground, a transition time for a treatment mechanism (700) to switch from the first treatment to the second treatment at the target boundary location between the first treatment region and the second treatment region;control the treatment mechanism (700) of the precision agricultural system (100) to apply the first treatment to a target in the first treatment region;subsequent to applying the first treatment, capture a second image (822) of a second field region (824) with the second camera (800) of the precision agriculture system (100) after the transition time, wherein both the first and second image (222, 822) comprise a reference feature (702);determine a difference in position between an actual treatment boundary location (720) and the target treatment boundary location (710) by comparing both the actual treatment boundary location (720) and the target treatment boundary location (710) to the reference feature (702);calculate a calibration factor based on the difference between the actual treatment boundary location (720) and the target treatment boundary location (710);and calibrate the treatment mechanism (700) to accommodate for the treatment delay using the calibration factor.