IP Library Patent Application 18164592
Patent Application
App. No. 18/164,592

THREE-POINT HITCH HOOK UP ASSIST SYSTEM

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Quick Facts
Patent No.
US None
App. No.
18/164,592
Abstract

A three-point hitch hookup assist system may include a three-point hitch system. The three-point hitch system may include a lower link having a first connection about which the lower link pivots and an implement connector, a powered actuator to pivot the lower link, a first sensor coupled to the lower link to output signals indicating a manual force applied by an operator to the lower link, and a controller. The controller may output control signals to the powered actuator to cause the powered actuator to apply an assist force to the lower link based upon the sensed manual force.

Claims (53)

1 . A vehicle comprising:

a three-point hitch hookup assist system comprising:

a lower link having a first connection about which the lower link pivots and an implement connector;

a powered actuator to pivot the lower link;

a first sensor coupled to the lower link or the powered actuator to output signals indicating a manual force applied by an operator to the lower link; and

a controller to output control signals to the powered actuator to cause the powered actuator to apply an assist force to the lower link based upon the manual force.

2 . The vehicle of claim 1 further comprising a second three-point hitch hook up assist system comprising:

a second lower link having a second connection about which the second link pivots and a second implement connector;

a second powered actuator to pivot a second lower link;

a second sensor coupled to the second lower link to sense a second manual force applied by an operator to the second lower link,

wherein the controller is configured to output control signals to the second powered actuator to cause the second powered actuator to apply a second assist system force to the second lower link based upon the second manual force.

3 . The vehicle of claim 1 , wherein the powered actuator comprises a hydraulic piston-cylinder assembly and wherein the sensor comprises a first fluid pressure sensor to sense fluid pressure on a rod side of the hydraulic piston-cylinder assembly and a second fluid pressure sensor to sense fluid pressure on a cap side of the hydraulic piston-cylinder assembly.

4 . The vehicle of claim 1 , wherein the assist force is based upon a weight of the lower link.

5 . The vehicle of claim 1 , wherein the assist force has a value to bring a resultant weight of the lower link felt by the operator, when pivoting the lower link, to null.

6 . The vehicle of claim 1 further comprising a position sensor to sense an angular position of the lower link, wherein the control signals are based on the angular position of the lower link.

7 . The vehicle of claim 1 , wherein the controller outputs the control signals in a closed-loop feedback comprising:

applying a powered force to the lower link;

sensing a current upward force experienced by the lower link; and

applying the assist force to the lower link, the assist force comprising the powered force plus a difference between the powered force and the current upward force.

8 . The vehicle of claim 1 , wherein the controller is configured to apply the assist force at an operator selected frequency.

9 . The vehicle of claim 1 further comprising a sensor to output operator presence signals indicating presence of an operator proximate to the lower link, wherein the controller is configured to apply the assist force in response to the vehicle being in a hookup assist mode and wherein the controller is configured to enter the hookup assist mode based upon operator presence signals.

10 . A method for assisting an operator with manual positioning of a lower link of a three-point hitch, the method comprising:

sensing manual force applied to a lower link of a three-hitch; and

applying an assist force to the lower link based upon the sensed manual force.

11 . The method of claim 10 further comprising:

sensing a second manual force applied to a second lower link of a three-hitch system; and

applying a second assist force to the second lower link based upon the second manual force.

12 . The method of claim 10 , wherein the sensing of the manual force applied to the lower link comprises sensing a hydraulic pressure change in a piston-cylinder assembly.

13 . The method of claim 10 , wherein the assist force is based upon a weight of the lower link.

14 . The method of claim 10 , wherein the assist force has a value to cause a resultant weight felt by the operator, during pivoting of the lower link, to be null.

15 . The method of claim 10 further comprising sensing an angular position of the lower link, wherein the assist force is based on the angular position of the lower link.

16 . The method of claim 10 further comprising executing a closed-loop feedback, the closed-loop feedback comprising:

applying a powered force to the lower link;

sensing a current upward force experienced by the lower link; and

applying the assist force to the lower link, the assist force comprising the powered force plus a difference between the powered force and the current force.

17 . The method of claim 10 , wherein application of the assist force is at an operator selected frequency.

18 . A tractor comprising:

a chassis;

a three-point hitch hookup assist system comprising:

a first lower link pivotably coupled to the chassis and having a first implement connector;

a second lower link pivotably coupled to the chassis and having a second implement connector;

an upper link pivotably coupled to the chassis and having a third implement connector;

a powered actuator to pivot the first lower link;

a sensor coupled to the first lower link to sense a manual force applied by an operator to the first lower link; and

a controller to output control signals to the first actuator to cause the first powered actuator to apply an assist system force to the first lower link based upon the sensed manual force.

19 . The tractor of claim 18 further comprising a second three-point hitch hookup assist system comprising:

a second powered actuator to pivot the second lower link independent of pivoting of the first lower link;

a second sensor coupled to the second lower link to sense a second manual force applied by an operator to the second lower link,

wherein the controller is configured to output control signals to the second powered actuator to cause the second powered actuator to apply a second assist system force to the second lower link based upon the second manual force.

20 . The tractor of claim 18 , further comprising a directional control valve, wherein the powered actuator comprises a hydraulic cylinder-piston assembly comprising a piston, wherein the sensor is configured to sense a first fluid pressure on a first side of the piston and a second fluid pressure on a second side of the piston, and wherein the controller is configured to:

output control signals directing the directional control valve to supply additional hydraulic fluid to the second side of the piston in response to the first fluid pressure being greater than the second fluid pressure;

output control signals directing the directional control valve to supply additional hydraulic fluid to the first side of the piston in response to the second fluid pressure being greater than the first fluid pressure; and

discontinue supply of hydraulic fluid to either the first side of the piston or the second side of the piston in response to the first fluid pressure equaling the second fluid pressure.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2026
From: ZIMENO INC. D/B/A MONARCH TRACTOR
To: CATERPILLAR INC.
Reel/Frame 074144/0706 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2023
From: OMOHUNDRO, ZACHARY MEYER; YIN, CHENJIA; JUTKOWITZ, AVERY; CHUKEWAD, YOGESH MADHAVRAO
To: ZIMENO, INC. DBA MONARCH TRACTOR
Reel/Frame 062592/0756 →