IP Library Granted Patent US 12,371,306
Granted Patent B2
US 12,371,306 · App. 18/523,266 · Granted Jul 29, 2025

Apparatus, system, and method to control torque or lateral thrust applied to a load suspended on a suspension cable

Inventors: Derek Sikora (Denver, CO); Logan Goodrich (Golden, CO); Preston Fitzrandolph (Boulder, CO)
Assignee: Vita Inclinata IP Holdings LLC
B66C13/46B66C13/06
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Quick Facts
Patent No.
US 12,371,306
App. No.
18/523,266
Granted
Jul 29, 2025
Kind
B2
Abstract

Disclosed are systems, apparatuses, and methods for and related to dynamic control of torque and or lateral thrust applied to a load suspended load on a suspension cable to thereby achieve a target orientation or position or to otherwise move with reduced self-induced cyclic motion, with better behavior, and or to respond to changes in the load or disturbance forces.

Claims (32)

1. An apparatus to rotate or laterally move a load suspended on a suspension cable, comprising:

a thruster, a thruster controller, and a sensor suite, wherein the sensor suite is to obtain a sensor data, wherein the sensor data comprises a last-measured orientation of the load;

a computer processor and a memory, wherein the memory comprises a gain adjustment module and a decision and control module;

wherein the computer processor is to execute the gain adjustment module and the decision and control module, wherein the gain adjustment module is to apply a gain control schedule to change a parameter of the decision and control module to control a gain of a thrust control signal of the decision and control module and wherein the decision and control module is to determine the thrust control signal based at least in part on the last-measured orientation of the load, a target orientation or position of the load, and the parameter and is to output the thrust control signal;

and wherein the thruster controller is to act on the thrust control signal to cause the thruster to output a thrust, wherein the thrust is to rotate or propel the load suspended on the suspension cable.

2. The apparatus according to claim 1 , wherein the gain control schedule is based on an operating point value.

3. The apparatus according to claim 2 , wherein the operating point value comprises at least one of an estimated rotational inertia of at least one of the apparatus and the load and a disturbance estimation with respect to at least one of the apparatus and the load.

4. The apparatus according to claim 3 , wherein the operating point is determined based on a plurality of test points.

5. The apparatus according to claim 4 , wherein the operating point is determined based on linear interpolation between the plurality of test points.

6. The apparatus according to claim 3 , wherein the operating point value is determined based on a system model.

7. The apparatus according to claim 6 , wherein the system model comprises an estimate of at least one of an angular rate of at least one of the apparatus and the load, a mass of the apparatus and load, a length of the suspension cable, a rotational inertia of the apparatus and load, a rotation of the load, a lateral movement of the apparatus and load, a lateral movement of a carrier, a disturbance estimation of wind force or a relative motion between the carrier and the load.

8. A computer implemented method to rotate or laterally move a load suspended on a suspension cable, comprising:

with a thruster, a thruster controller, and a sensor suite, obtaining from the sensor suite a sensor data, wherein the sensor data comprises a last-measured orientation of the load;

determining a thrust control signal based at least in part on the last-measured orientation of the load, a target orientation or position of the load, and a parameter;

changing the parameter based on an operating point value to control a gain of the thrust control signal, and outputting the thrust control signal; and

the thruster controller acting on the thrust control signal to cause the thruster to output a thrust, wherein the thrust is to rotate or propel the load suspended on the suspension cable to the target orientation or position.

9. The method according to claim 8 , further comprising determining the operating point value.

10. The method according to claim 9 , wherein the operating point value comprises at least one of an estimated rotational inertia of at least one of the apparatus and the load and a disturbance estimation with respect to at least one of the apparatus and the load.

11. The method according to claim 9 , further comprising determining the operating point value based on linear interpolation between a plurality of test points.

12. The method according to claim 9 , further comprising determining the operating point value based on a system model.

13. The method according to claim 12 , wherein the system model comprises an estimate of at least one of an angular rate of at least one of the apparatus and the load, a mass of the apparatus and load, a length of the suspension cable, a rotational inertia of the apparatus and load, a rotation of the load, a lateral movement of the apparatus and load, a lateral movement of a carrier, a disturbance estimation of wind force or a relative motion between the carrier and the load.

14. A computer apparatus to rotate or laterally move a load suspended on a suspension cable, comprising:

with a thruster, a thruster controller, and a sensor suite, means to obtain from the sensor suite a sensor data, wherein the sensor data comprises a last-measured orientation of the load;

means to determine a thrust control signal based at least in part on the last-measured orientation of the load, a target orientation or position of the load, and a parameter;

means to change the parameter based on an operating point value to control a gain of the thrust control signal;

means to output the thrust control signal; and

further comprising means for the thruster controller to act on the thrust control signal to cause the thruster to output a thrust, wherein the thrust is to rotate or propel the load suspended on the suspension cable to the target orientation or position of the load.

15. The apparatus according to claim 14 , further comprising means to determine the operating point value.

16. The apparatus according to claim 15 , wherein the operating point value comprises at least one of an estimated rotational inertia of at least one of the apparatus and the load and a disturbance estimation with respect to at least one of the apparatus and the load.

17. The apparatus according to claim 15 , further comprising means to determine the operating point value based on linear interpolation between a plurality of test points.

18. The apparatus according to claim 15 , further comprising means to determine the operating point value based on a system model.

19. The apparatus according to claim 18 , wherein the system model comprises an estimate of at least one of an angular rate of at least one of the apparatus and the load, a mass of the apparatus and load, a length of the suspension cable, a rotational inertia of the apparatus and load, a rotation of the load, a lateral movement of the apparatus and load, a lateral movement of a carrier, a disturbance estimation of wind force or a relative motion between the carrier and the load.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2024
From: VITA INCLINATA TECHNOLOGIES, INC.
To: VITA INCLINATA IP HOLDINGS LLC
Reel/Frame 066302/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2023
From: SIKORA, DEREK; GOODRICH, LOGAN; FITZRANDOLPH, PRESTON
To: VITA INCLINATA TECHNOLOGIES, INC.
Reel/Frame 065704/0207 →
Continuity (4)
Continuation 17953259 · Sep 26, 2022
Continuation In Part 16847448 · Apr 13, 2020
Provisional Application 62833394 · Apr 12, 2019
Related Publication 20240101399A1 · Mar 28, 2024
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