IP Library Granted Patent US 9,629,304
Granted Patent B2
US 9,629,304 · App. 13/858,681 · Granted Apr 25, 2017

On-the go soil sensors and control methods for agricultural machines

Inventor: Roger R. Zielke (Huxley, IA)
Assignee: Ag Leader Technology
A01C7/10A01B49/06A01B63/008A01C7/105A01C7/20A01C7/203A01C21/00G01K1/14G01N19/10G01N33/24A01B63/1115G01B21/18Y10S111/903
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Quick Facts
Patent No.
US 9,629,304
App. No.
13/858,681
Granted
Apr 25, 2017
Kind
B2
Abstract

An on-the-go monitor and control means and method for an agriculture machines includes on-the-go soil sensors that can be used to control tillage and seeding depth. On seeder implements, the sensors provide information that affects uniform plant emergence.

Claims (27)

1. A method of adjusting seed planting depth on-the-go for a row unit of a planter, the method comprising:

providing a control system operatively connected to the planter, the control system comprising a soil moisture sensor, an actuator for adjusting a seed planting depth, and an intelligent control electrically connected to the actuator and the soil moisture sensor;

measuring moisture at the planting depth of seeds with the soil moisture sensor as seeds are planted to provide soil moisture data;

analyzing sensor data to provide seed planting depth adjustments, the sensor data including the soil moisture data; and

automatically adjusting seed planting depth on-the-go as seeds are planted in a row by the row unit using the actuator based on the seed planting depth adjustments;

wherein the control system further includes a soil temperature sensor electrically connected to the intelligent control and the method further comprises measuring soil temperature with the soil temperature sensor as the seeds are planted to provide soil temperature data and wherein the sensor data-further comprises the soil temperature; and

the control system further comprises a soil contact sensor electrically connected to the intelligent control and the method further comprises measuring seed-to-soil contact with the soil contact sensor as the seeds are planted.

2. The method of claim 1 wherein the control system further comprises a seed trench depth sensor electrically connected to the intelligent control and the method further comprises measuring depth with the depth sensor as the seeds are planted to provide depth data and wherein the sensor data further comprises the depth data.

3. The method of claim 1 wherein the sensor data further comprises the soil contact data.

4. A method of adjusting seed planting depth on-the-go for a row unit of a planter, the method comprising:

providing a control system operatively connected to the planter, the control system comprising a soil moisture sensor, an actuator for adjusting a seed planting depth, and an intelligent control electrically connected to the actuator and the soil moisture sensor;

measuring moisture at the planting depth of seeds with the soil moisture sensor as seeds are planted to provide soil moisture data;

analyzing sensor data to provide seed planting depth adjustments, the sensor data including the soil moisture data; and

automatically adjusting seed planting depth on-the-go as seeds are planted in a row by the row unit using the actuator based on the seed planting depth adjustments;

wherein the control system further comprises a seed trench depth sensor electrically connected to the intelligent control and the method further comprises measuring depth with the depth sensor as the seeds are planted to provide depth data and wherein the sensor data further comprises the depth data;

wherein the control system further comprises a soil contact sensor electrically connected to the intelligent control and the method further comprises measuring seed-to-soil contact with the soil contact sensor as the seeds are planted.

5. The method of claim 4 wherein the control system further includes a soil temperature sensor electrically connected to the intelligent control and the method further comprises measuring soil temperature with the soil temperature sensor as the seeds are planted to provide soil temperature data and wherein the sensor data further comprises the soil temperature data.

6. The method of claim 4 wherein the sensor data further comprises the soil contact data.

7. A method of adjusting seed planting depth on-the-go for a row unit of a planter, the method comprising:

providing a control system operatively connected to the planter, the control system comprising a soil moisture sensor, an actuator for adjusting a seed planting depth, and an intelligent control electrically connected to the actuator and the soil moisture sensor;

measuring moisture at the planting depth with the soil moisture sensor as seeds are planted to provide soil moisture data;

analyzing sensor data to provide seed planting depth adjustments, the sensor data including the soil moisture data; and

automatically adjusting seed planting depth on-the-go as seeds are planted in a row by the row unit using the actuator based on the seed planting depth adjustments;

wherein the control system further comprises a soil contact sensor electrically connected to the intelligent control and the method further comprises measuring seed-to-soil contact of seeds with the soil contact sensor as the seeds are planted to provide soil contact data.

8. The method of claim 7 wherein the control system further comprises a seed trench depth sensor electrically connected to the intelligent control and the method further comprises measuring depth with the depth sensor as the seeds are planted to provide depth data and wherein the sensor data further comprises the depth data.

9. The method of claim 7 wherein the control system further includes a soil temperature sensor electrically connected to the intelligent control and the method further comprises measuring soil temperature with the soil temperature sensor as the seeds are planted to provide soil temperature data and wherein the sensor data further comprises the soil temperature data.

10. The method of claim 7 wherein the sensor data further comprises the soil contact data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2013
From: ZIELKE, ROGER R.
To: AG LEADER TECHNOLOGY
Reel/Frame 030172/0355 →
Continuity (1)
Related Publication 20140303854A1 · Oct 9, 2014