Agricultural planting depth sensor

US9693496B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9693496-B2
Application numberUS-201514871254-A
CountryUS
Kind codeB2
Filing dateSep 30, 2015
Priority dateSep 30, 2015
Publication dateJul 4, 2017
Grant dateJul 4, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An agricultural planting machine is described. In one example, the machine comprises a trench opener configured to open a trench, and a trench depth sensing system comprising a ground-engaging component and a trench depth sensor configured to generate a signal indicative a displacement of the ground-engaging component by directly sensing a surface of the ground engaging component. In one example, an agricultural planting machine comprising a trench opener configured to open a trench, and a trench depth sensing system comprising a ground-engaging component and a capacitive sensor comprising a transmitter element driven by an input signal to generate an electric field and a receiver element configured to generate an output signal based on a capacitive coupling between the transmitter and receiver elements, wherein the capacitive coupling changes based on movement of the ground-engaging component within the electric field. A trench depth calculation component is configured to generate an indication of trench depth based on the output signal.

First claim

Opening claim text (preview).

What is claimed is: 1. An agricultural planting machine comprising: a trench opener configured to open a trench; and a trench depth sensing system comprising: a ground-engaging component; a capacitive sensor comprising a transmitter element driven by an input signal to generate an electric field and a receiver element at a fixed position relative to the transmitter element and configured to generate an output signal based on a capacitive coupling between the transmitter and receiver elements, wherein the capacitive coupling changes based on movement of the ground-engaging component, relative to the fixed position of the transmitter and receiver elements, within the electric field; and a trench depth calculation component configured to generate an indication of trench depth based on the output signal. 2. The agricultural planting machine of claim 1 , wherein the agricultural planting machine comprises one of a box drill, an air seeder, or a row crop planter. 3. The agricultural planting machine of claim 1 , wherein the transmitter and receiver elements are fixedly positioned on a row unit frame of the agricultural planting machine, the transmitter and receiver elements being proximate the ground engaging component. 4. The agricultural planting machine of claim 3 , wherein the trench depth calculation component is configured to determine a location of the ground-engaging component relative to the capacitive sensor based on the signal, and to calculate the trench depth based on the location of the ground-engaging component relative to the capacitive sensor and a distance from the capacitive sensor to the trench opener, and wherein the trench depth sensing system comprises a display configured to display an indication of the calculated trench depth. 5. The agricultural planting machine of claim 4 , wherein the ground-engaging component comprises a gauge wheel configured to engage the ground adjacent the trench. 6. The agricultural planting machine of claim 1 , wherein the capacitive sensor comprises an array of capacitive sensing elements, each capacitive sensing element being configured to generate an output signal that is indicative of dielectric properties of a medium proximate the sensing element. 7. The agricultural planting machine of claim 6 , wherein the trench depth calculation component is configured to determine the location of the ground engaging component based on a comparison of signals from the capacitive sensing elements, and to calculate the trench depth based on the determined location. 8. The agricultural planting machine of claim 6 , wherein each capacitive sensing element in the array comprises at least one transmitter element and at least one receiver element, and each transmitter element is disposed between two receiver elements. 9. The agricultural planting machine of claim 8 , wherein the array comprises a first array of transmitter elements and a second array of transmitter elements, the first and second arrays having a different input signal phase. 10. The agricultural planting machine of claim 6 , wherein the array of capacitive sensing elements is aligned along a plane that faces the ground engaging component. 11. An agricultural planting machine comprising: a trench opener configured to open a trench; and a trench depth sensing system comprising: a ground-engaging component; and a trench depth sensor comprising a transmitter element and a receiver element at a fixed position relative to the transmitter element, the trench depth sensor configured to generate a signal indicative a displacement of the ground-engaging component by directly sensing a surface of the ground engaging component. 12. The agricultural planting machine of claim 11 , wherein the ground engaging component comprises a gauge wheel. 13. The agricultural planting machine of claim 11 , wherein the trench depth sensor comprises a capacitive sensor. 14. The agricultural planting machine of claim 11 , wherein the trench depth sensor comprises an optical sensor. 15. The agricultural planting machine of claim 11 , wherein the trench depth sensor comprises a microwave sensor. 16. The agricultural planting machine of claim 11 , wherein the trench depth sensor comprises an object detection sensor that utilizes radio waves. 17. An agricultural planting machine row unit comprising: a trench opener configured to open a trench; and a trench depth sensing system comprising: a capacitive sensor mounted on the trench opener, the capacitive sensor comprising an array of capacitive sensing elements, each capacitive sensing element having a transmitter element driven by an input signal to generate an electric field and a receiver element configured to generate an output signal indicative of dielectric properties of a medium proximate the sensing element; and a trench depth indication component configured to generate an indication of trench depth based on the output signals from the capacitive sensing elements. 18. The agricultural planting machine row unit of claim 17 , wherein the trench depth indication component is configured to determine whether each capacitive sensing element is adjacent a sidewall of the trench based on the dielectric properties indicated by the output signal generated by the capacitive sensing element. 19. The agricultural planting machine row unit of claim 17 , wherein the medium comprises soil, and the trench opener is configured to open the trench in the soil. 20. The agricultural planting machine row unit of claim 17 , wherein the trench depth indication component comprises a display configured to display the indication of trench depth.

Assignees

Inventors

Classifications

  • G01B7/26Primary

    for measuring depth · CPC title

  • Sowing · CPC title

  • A01B17/00Primary

    Ploughs with special additional arrangements, e.g. means for putting manure under the soil, clod-crushers · CPC title

  • comprising depth regulation means · CPC title

  • by investigating capacitance · CPC title

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What does patent US9693496B2 cover?
An agricultural planting machine is described. In one example, the machine comprises a trench opener configured to open a trench, and a trench depth sensing system comprising a ground-engaging component and a trench depth sensor configured to generate a signal indicative a displacement of the ground-engaging component by directly sensing a surface of the ground engaging component. In one exampl…
Who is the assignee on this patent?
Deere & Co
What technology area does this patent fall under?
Primary CPC classification G01B7/26. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jul 04 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).