IP Library Granted Patent US 12,643,642
Granted Patent B2
US 12,643,642 · App. 18/907,221 · Granted Jun 2, 2026

Vehicle for installing anchors in an underwater substrate

Inventors: Peter Sturt Lynn (Alameda, CA); Jonathan B. Pompa (Long Beach, CA)
Assignee: OTHER LAB, LLC
B63B79/40B63B21/20B63B21/26B63B79/10B63H11/00E02D5/801E02D7/22
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Quick Facts
Patent No.
US 12,643,642
App. No.
18/907,221
Granted
Jun 2, 2026
Kind
B2
Abstract

An anchor installation vehicle that includes a vehicle frame having a top end and bottom end, one or more arms extending outward from the vehicle frame, one or more rotational thrusters disposed at distal ends of the one or more arms, and an anchor system configured to hold an anchor extending from the bottom end of the vehicle frame with the anchor aligned with a central axis Y. The anchor installation vehicle is configured to drive the anchor downward into an underwater substrate at an anchor installation location based on reaction torque generated by the one or more rotational thrusters and without reaction torque generated by contact between the anchor installation vehicle and the underwater substrate.

Claims (36)

1 . An anchor installation vehicle including:

a vehicle frame having a top end and bottom end;

at least three linear arms extending outward from the vehicle frame;

one or more rotational thrusters disposed at distal ends of the respective arms;

an electronic system;

an anchor system configured to hold an anchor extending from the bottom end of the vehicle frame and aligned with a central axis Y that is perpendicular to the at least three linear arms; and

a tether coupled at the top end of the vehicle frame and configured to communicate data with a support vessel floating on a body of water, the tether further configured to provide electrical power from the support vessel to the anchor installation vehicle,

wherein the anchor installation vehicle is configured to be driven in the body of water via at least the one or more rotational thrusters, based at least in part on a first set of instructions received via the tether from a support computer system of the support vessel, to an anchor installation location on an underwater substrate in the body of water; and

wherein at least a portion of the anchor installation vehicle is configured to be rotated via the rotational thrusters about the central axis Y to drive the anchor downward into the underwater substrate at the anchor installation location based on reaction torque generated solely by the rotational thrusters and without reaction torque generated by contact between the anchor installation vehicle and the underwater substrate.

2 . The anchor installation vehicle of claim 1 , wherein only the anchor engages with the underwater substrate during installation of the anchor and no part of the anchor installation vehicle engages the underwater substrate during installation of the anchor.

3 . The anchor installation vehicle of claim 1 , wherein the anchor installation vehicle has exactly four arms extending from the vehicle frame.

4 . The anchor installation vehicle of claim 1 , wherein the tether is coupled to the anchor installation vehicle via a slip ring tether attachment that is coincident with the central axis Y.

5 . The anchor installation vehicle of claim 1 , wherein the anchor installation vehicle further comprises:

a bottom camera coupled at the bottom end of the vehicle frame operably connected to the electronic system.

6 . The anchor installation vehicle of claim 1 , wherein the anchor installation vehicle is configured to be driven, based at least in part on a second set of instructions received via the tether from the support computer system of the support vessel, to engage the anchor with the underwater substrate at the anchor installation location.

7 . An anchor installation vehicle including:

a vehicle frame having a top end and bottom end,

one or more arms extending outward from the vehicle frame,

one or more rotational thrusters disposed at distal ends of the one or more arms, and

an anchor system configured to hold an anchor extending from the bottom end of the vehicle frame with the anchor aligned with a central axis Y,

wherein the anchor installation vehicle is configured to drive the anchor downward into an underwater substrate at an anchor installation location based on reaction torque generated by the one or more rotational thrusters and without reaction torque generated by contact between the anchor installation vehicle and the underwater substrate.

8 . The anchor installation vehicle of claim 7 , wherein the reaction torque generated to drive the anchor downward into the underwater substrate is generated solely by the one or more rotational thrusters.

9 . The anchor installation vehicle of claim 7 , wherein the anchor installation vehicle is configured to be driven in a body of water via at least the one or more rotational thrusters, based at least in part on a first set of instructions received from a support computer system of a support vessel, to the anchor installation location of the underwater substrate in the body of water.

10 . The anchor installation vehicle of claim 9 , wherein the anchor installation vehicle is configured to generate an axial force on the anchor along the central axis Y by one or more of: tether tension and weight, reducing buoyancy of the anchor installation vehicle, changing pitch of the one or more rotational thrusters, an axial thrust component, and a self-starting anchor design.

11 . The anchor installation vehicle of claim 7 , wherein the anchor installation vehicle is configured to determine that installation of the anchor is complete and stop rotating of the anchor installation vehicle about the central axis Y based on determining that installation of the anchor is complete.

12 . The anchor installation vehicle of claim 11 , wherein the anchor installation vehicle further comprises a torque sensor, and wherein the determination that installation of the anchor is complete is based at least in part on data obtained from the torque sensor.

13 . The anchor installation vehicle of claim 7 , wherein the anchor system is configured to disengage from the anchor to release the anchor.

14 . An anchor installation vehicle configured to drive an anchor downward into an underwater substrate at an anchor installation location based on reaction torque generated by one or more rotational thrusters and without reaction torque generated by contact between the anchor installation vehicle and the underwater substrate,

wherein the anchor installation vehicle is configured to rotationally drive the anchor into the underwater substrate based on rotation of the anchor installation vehicle caused by the one or more rotational thrusters.

15 . The anchor installation vehicle of claim 14 , wherein the anchor installation vehicle comprises:

a vehicle frame having a top end and bottom end,

an anchor system configured to hold an anchor extending from the bottom end of the vehicle frame.

16 . The anchor installation vehicle of claim 14 , wherein the anchor installation vehicle is configured to operate underwater.

17 . The anchor installation vehicle of claim 14 , wherein only the anchor engages with the underwater substrate during installation of the anchor and no part of the anchor installation vehicle engages the underwater substrate during installation of the anchor.

18 . The anchor installation vehicle of claim 14 , wherein the reaction torque generated to drive the anchor downward into the underwater substrate is generated solely by the one or more rotational thrusters.

19 . The anchor installation vehicle of claim 14 , wherein the anchor installation vehicle further comprises a tether configured to provide a communication channel with a support vessel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2024
From: LYNN, PETER STURT; POMPA, JONATHAN B.
To: OTHER LAB, LLC
Reel/Frame 068806/0151 →
Continuity (4)
Continuation 18080491 · Dec 13, 2022
Continuation 17159632 · Jan 27, 2021
Provisional Application 62966187 · Jan 27, 2020
Related Publication 20250026460A1 · Jan 23, 2025
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