IP Library › Granted Patent US 10,928,504
Granted Patent B2
US 10,928,504 · App. 15/885,189 · Granted Feb 23, 2021

Radar based seed sensor for use with agricultural systems, methods, and apparatus

Inventors: Ryan Taylor (Cedar Rapids, IA); Dustan Hahn (Williamsburg, IA); Scott Porter (Liberty Hill, TX)
Assignee: Kinze Manufactoring, Inc.
G01S13/58A01C7/08A01C7/105A01C7/206G01S13/50G01S13/88A01C7/04
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Quick Facts
Patent No.
US 10,928,504
App. No.
15/885,189
Granted
Feb 23, 2021
Kind
B2
Abstract

A sensor assembly includes a sensor in the form of a microwave radar device to dispense microwaves in an area where seed or other particulate material is to be sensed. This may be a seed tube of a row unit. The microwaves of the radar provide an accurate determination if a seed or other particulate material has passed through the field of vision of the sensor to provide an accurate sensing of a seed event. This information can be used to determine the rate of planting, skips, doubles, as well as any other information related to the passing of a seed or other particulate material.

Claims (17)

1. A row unit, comprising:

a seed tube;

a microwave radar device associated with the seed tube that generates and receives electromagnetic waves;

wherein signal processing components:

(a) electronically process the electromagnetic waves according to properties associated therewith, said properties comprising energy, time delay, and frequency shift; and

(b) generate electronic signals that represent the presence of a seed and characteristics associated therewith, said characteristics comprising size, shape, orientation, material, distance, and velocity of the seed.

2. The row unit of claim 1 , wherein the electromagnetic waves have wavelengths of 10 GHz-300 GHz.

3. The row unit of claim 2 , wherein the electrical signals are then manipulated to filter noise and outside echoes.

4. The row unit of claim 3 , wherein the electrical signal is manipulated to highlight or exaggerate the effect of the passing of the seed in the seed tube.

5. The row unit of claim 4 , wherein the electrical signal is further analyzed by digital signal algorithms running on a microprocessor to determine that a seed or seeds are passing by the sensor, said signal processing components optionally comprising said microprocessor.

6. The row unit of claim 5 , wherein the electrical signal is sent to a planter via an open collector signal.

7. The row unit of claim 5 , wherein the electrical signal utilizes a LIN (Local Interconnect Network) communication protocol.

8. The row unit of claim 5 , wherein the electrical signal utilizes a serial communication protocol.

9. The row unit of claim 5 , wherein the electrical signal utilizes a CAN bus (Controller Area Network) communication protocol.

10. The row unit of claim 5 , wherein the electrical signal utilizes Ethernet.

11. The row unit of claim 1 , wherein the microwave radar device comprises multiple radar devices using similar or different radar processing techniques to assist in accurately identifying seed passage or different physical characteristics about the seed.

12. The row unit of claim 1 , wherein the seed tube is fabricated from or coated with conductive material that reflects the electronic signals from passing beyond the seed tube.

Continuity (2)
Provisional Application 62452703 · Jan 31, 2017
Related Publication 20180224537A1 · Aug 9, 2018