US2019236359A1PendingUtilityA1

Vision-based system for acquiring crop residue data and related calibration methods

Assignee: CNH IND AMERICA LLCPriority: May 16, 2017Filed: Apr 5, 2019Published: Aug 1, 2019
Est. expiryMay 16, 2037(~10.8 yrs left)· nominal 20-yr term from priority
A01B 79/005A01B 49/027A01B 63/32A01B 76/00G06K 9/00657G06K 2209/17G06V 20/68G06V 20/188
53
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

A method for calibrating crop residue data for a field acquired using a vision-based system may include receiving image data associated with an imaged portion of the field, analyzing the image data using a first residue-estimating technique to determine a first estimated value of a crop residue parameter for the imaged portion of the field, and analyzing the image data using a second residue-estimating technique to determine a second estimated value of the crop residue parameter for the imaged portion of the field. In addition, when a differential exists between the first and second estimated values, the method may also include adjusting at least one of the first estimated value or one or more additional estimated values of the crop residue parameter determined using the first residue-estimating technique based on at least one of the second estimated value or the differential between first and second estimated values.

Claims

exact text as granted — not AI-modified
1 - 20 . (canceled) 
     
     
         21 . A method for calibrating crop residue data for a field acquired using a vision-based system, the method comprising:
 receiving, with a computing device, image data associated with one or more imaged portions of a field from one or more imaging devices provided in operative association with at least one of an implement or a work vehicle coupled to the implement;   analyzing, with the computing device, the image data using a first residue-estimating technique to generate a first set of residue data associated with a crop residue parameter for the one or more imaged portions of the field;   analyzing, with the computing device, the image data using a second residue-estimating technique to generate a second set of residue data associated with the crop residue parameter for the one or more imaged portions of the field, the second residue-estimating technique differing from the first residue-estimating technique; and   calibrating, with the computing device, the first set of residue data generated using the first residue-estimating technique based at least in part on the second set of residue data generated using the second residue-estimating technique.   
     
     
         22 . The method of  claim 21 , wherein receiving the image data associated with the one or more imaged portions of the field comprises receiving the image data as the implement is being traversed across the field to perform an agricultural operation. 
     
     
         23 . The method of  claim 22 , further comprising actively adjusting the operation of at least one of the implement or the work vehicle when an estimated value for the crop residue parameter determined based on the calibrated data differs from a target value set for the crop residue parameter. 
     
     
         24 . The method of  claim 21 , wherein the crop residue parameter corresponds to a percent crop residue coverage associated with the imaged portion of the field. 
     
     
         25 . The method of  claim 21 , wherein analyzing the image data using the first residue-estimating technique comprises analyzing the image data using a computer vision-based image processing technique. 
     
     
         26 . The method of  claim 25 , wherein the computer vision-based image processing technique corresponds to a vision-based blob analysis of the image data to generate the first set of residue data. 
     
     
         27 . The method of  claim 21 , wherein analyzing the image data using the second residue-estimating technique comprises analyzing the image data using a computer vision-based line transect method. 
     
     
         28 . The method of  claim 27 , wherein analyzing the image data using the computer vision-based line transect method comprises:
 accessing a plurality of images of the image data that collectively depict a continuous imaged section of the field, the continuous imaged section extending across a predetermined length;   applying a known scale to the continuous imaged section of the field such that a plurality of reference points are associated with the continuous imaged section; and   determining a percentage of the plurality of reference points that are aligned with or intersect crop residue within the plurality of images.   
     
     
         29 . A method for generating crop residue data, the method comprising:
 receiving, with the computing device, image data associated with an imaged portion of a field from one or more imaging devices provided in operative association with at least one of an implement or a work vehicle coupled to the implement;   analyzing, with the computing device, the image data using a residue-estimating technique, the analysis comprising:
 accessing a plurality of images of the image data that collectively depict a continuous imaged section of the field, the continuous imaged section extending across a predetermined length; 
 applying a known scale to the continuous imaged section of the field such that a plurality of reference points are associated with the continuous imaged section; and 
   determining a percentage of the plurality of reference points that are aligned with or intersect crop residue within the plurality of images; and   determining an estimated value of a crop residue parameter for the imaged portion of the field based at least in part on the percentage of the plurality of reference points that are aligned with or intersect crop residue within the plurality of images.   
     
     
         30 . The method of  claim 29 , wherein receiving the image data associated with the imaged portion of the field comprises receiving the image data as the implement is being traversed across the field to perform an agricultural operation. 
     
     
         31 . The method of  claim 30 , further comprising actively adjusting the operation of at least one of the implement or the work vehicle when the estimated value for the crop residue parameter differs from a target value set for the crop residue parameter. 
     
     
         32 . The method of  claim 29 , wherein the crop residue parameter corresponds to a percent crop residue coverage associated with the imaged portion of the field. 
     
     
         33 . The method of  claim 29 , wherein determining the percentage of the plurality of reference points that are aligned with or intersect crop residue within the plurality of images comprises determining the percentage of the plurality of reference points that are aligned with or intersect crop residue that exceeds a given size threshold. 
     
     
         34 . The method of  claim 29 , wherein applying the known scale to the continuous imaged section of the field comprises applying the known scale such that the plurality of reference points are spaced apart evenly across the predetermined length. 
     
     
         35 . The method of  claim 29 , further comprising:
 accessing a second plurality of images of the image data that collectively depict one or more additional continuous imaged sections of the field, each of the one or more additional continuous imaged sections of the field extending across the predetermined length;   applying the known scale to the one more additional continuous imaged sections of the field such that a plurality of reference points are associated with each of the one or more additional continuous imaged sections of the field;   determining a percentage of the plurality of reference points that are aligned with or intersect crop residue within the second plurality of images for each of the one or more additional continuous imaged sections of the field; and   determining the estimated value of the crop residue parameter based on an average of the determined percentages associated with the continuous image section of the field and the one or more additional continuous imaged sections of the field.   
     
     
         36 . A vision-based system for estimating and adjusting crop residue parameters as an implement is being towed across a field by a work vehicle, the system comprising:
 an imaging device installed relative to one of the work vehicle or the implement such that the imaging device is configured to capture images of the field;   a controller communicatively coupled to the imaging device, the controller including a processor and associated memory, the memory storing instructions that, when implemented by the processor, configure the controller to:
 receive, from the imaging device, image data associated with one or more imaged portions of the field; 
 analyze the image data using a first residue-estimating technique to generate a first set of residue data associated with a crop residue parameter for the one or more imaged portions of the field; 
 analyze the image data using a second residue-estimating technique to generate a second set of residue data associated with the crop residue parameter for the one or more imaged portions of the field, the second residue-estimating technique differing from the first residue-estimating technique; and 
 calibrate the first set of residue data generated using the first residue-estimating technique based at least in part on the second set of residue data generated using the second residue-estimating technique. 
   
     
     
         37 . The system of  claim 36 , wherein the imaging device comprises a camera. 
     
     
         38 . The system of  claim 36 , wherein the imaging device is installed relative to one of the work vehicle or the implement such that a field of view of the imaging device is directed either parallel or perpendicular to a travel direction of the work vehicle. 
     
     
         39 . The system of  claim 36 , wherein the crop residue parameter corresponds to a percent crop residue coverage associated with the imaged portion of the field. 
     
     
         40 . The system of  claim 36 , wherein the second residue-estimating technique corresponds to a computer vision-based line transect method and wherein, when analyzing the image data using the computer vision-based line transect method, the controller is configured to:
 access a plurality of images of the image data that collectively depict a continuous imaged section of the field, the continuous imaged section extending across a predetermined length;   apply a known scale to the continuous imaged section of the field such that a plurality of reference points are associated with the continuous imaged section; and   determine a percentage of the plurality of reference points that are aligned with or intersect crop residue within the plurality of images.

Join the waitlist — get patent alerts

Track US2019236359A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.