IP Library Granted Patent US 11,531,342
Granted Patent B2
US 11,531,342 · App. 17/233,666 · Granted Dec 20, 2022

Automatic location placement system

Inventor: Bradley Tyers (Currambine, AU)
Assignee: MAID IP Holdings Pty/Ltd
G05D1/0206B63H25/04G01C21/203G01S19/13B63B21/00B63H2025/045
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Quick Facts
Patent No.
US 11,531,342
App. No.
17/233,666
Granted
Dec 20, 2022
Kind
B2
Abstract

A method of automatically moving, by an automatic location placement system, a marine vessel includes receiving, by a central processing unit, from a vision ranging photography system, at least one optical feed including data providing a mapping of an environment surrounding a marine vessel. The method includes displaying, by the central processing unit, on a touch screen monitor, the mapping of the environment. The method includes receiving, by the central processing unit, from the touch screen monitor, target location data. The method includes directing, by the central processing unit, at least one element of a propulsion system of the marine vessel, to move the marine vessel to the targeted location, using the mapping.

Claims (51)

1. A method for automatically navigating a marine vessel in relation to memorized reference points on an external object, the method comprising:

sensing, using at least one transducer, sensed reference points on the external object;

transmitting information representing the sensed reference points on the external object to a processor control unit;

receiving, by the processor control unit, the information representing the sensed reference points on the external object;

at the processor control unit, memorizing the information representing the sensed reference points on the external object as memorized reference point information, whereby the memorized reference points are the same points as the sensed reference points; and

automatically navigating the marine vessel to a position in relation to the memorized reference points on the external object.

2. The method of claim 1 , further comprising:

automatically stopping the marine vessel at a default distance relative to the external object; and

automatically maintaining the default distance between the marine vessel and the external object.

3. The method of claim 1 , wherein automatically navigating the marine vessel comprises automatically moving the marine vessel at a controlled velocity toward the external object, comprising:

sensing the marine vessel's position relative to the external object;

receiving, by the processor control unit, a set of distance, position and velocity information relating to distance, position and velocity between the marine vessel and the external object in real-time; and

automatically controlling, by the processor control unit, at least one element of a propulsion system of the marine vessel, to navigate the marine vessel at the controlled velocity toward the external object.

4. The method of claim 3 , wherein automatically controlling the at least one element of the propulsion system comprises automatically controlling, by the processor control unit, the propulsion system of the marine vessel to navigate the marine vessel at the controlled velocity towards the external object in real-time.

5. The method of claim 3 , wherein stopping the marine vessel at the default distance relative to the external object comprises, at the processor control unit, automatically engaging the propulsion system to reduce the controlled velocity and to stop the marine vessel at the default distance relative to the external object.

6. The method of claim 5 , further comprising, at the processor control unit, automatically engaging the propulsion system to maintain the marine vessel at the default distance relative to the external object.

7. The method of claim 3 , wherein automatically controlling, by a processor control unit, the at least one element of the propulsion system of the marine vessel to navigate the marine vessel at the controlled velocity toward the external object comprises:

calculating, at the processor control unit, a path of movement of the marine vessel, incorporating information about at least one obstacle detected by a hazard detection and avoidance system;

determining, by the processor control unit, a required directional force to allocate to the at least one element of the propulsion system on the marine vessel, based upon a current location of the marine vessel relative to the external object; and

engaging, at the processor control unit, the propulsion system to perform collision-free path planning at a controlled velocity relative to the memorized lateral reference points on the external object.

8. The method of claim 1 , wherein the sensed reference points on the external object comprise sensed lateral reference points on the external object.

9. The method of claim 1 , wherein the at least one transducer comprises at least one lateral transducer.

10. The method of claim 9 , wherein the sensed reference points on the external object comprise sensed lateral reference points on the external object.

11. The method of claim 1 , wherein the memorized reference points on the external object comprise a fingerprint.

12. A system for automatically navigating a marine vessel in relation to memorized reference points on an external object, the system comprising:

a propulsion system;

at least one transducer adapted to:

sense sensed reference points on the external object; and

transmit information representing the sensed reference points on the external object to a processor control unit; and

the processor control unit, operatively connected to the propulsion system to:

receive the information representing the sensed reference points on the external object;

memorize the information representing the sensed reference points on the external object as memorized reference point information, whereby the memorized reference points are the same points as the sensed reference points; and

automatically control at least one element of the propulsion system to navigate the marine vessel in relation to the memorized reference points on the external object.

13. The system of claim 12 , wherein the processor control unit is further operatively connected to the propulsion system to:

automatically engage the propulsion system to stop the marine vessel at a default distance relative to the external object; and

automatically engage the propulsion system to maintain the default distance between the marine vessel and the external object.

14. The system of claim 12 , wherein the processor control unit is further operatively connected to the propulsion system to automatically move the marine vessel at a controlled velocity, towards the external object, wherein automatically moving comprises:

sensing the marine vessel's position relative to the external object;

receiving, by the processor control unit, a set of distance, position and velocity information relating to distance, position and velocity between the marine vessel and the external object in real-time; and

automatically controlling, by the processor control unit, at least one element of a propulsion system of the marine vessel, to navigate the marine vessel at the controlled velocity toward the external object.

15. The system of claim 14 , wherein automatically controlling the at least one element of the propulsion system of the marine vessel comprises automatically controlling the propulsion system of the marine vessel to navigate the marine vessel at the controlled velocity, per foot of travel per second, towards the external object in real-time.

16. The system of claim 14 , wherein the processor control unit is further operatively connected to the propulsion system to automatically control the at least one element of the propulsion system to engage the propulsion system to reduce the controlled velocity and to stop the marine vessel at the default distance relative to the external object.

17. The system of claim 16 , wherein the processor control unit is further operatively connected to the propulsion system to automatically engaging the propulsion system to maintain the marine vessel at the default distance relative to the external object.

18. The system of claim 12 , wherein the processor control unit is further operatively connected to the propulsion system to:

calculate a path of movement of the marine vessel, incorporating information about at least one obstacle detected by a hazard detection and avoidance system;

determine a required directional force to allocate to the at least one element of the propulsion system on the marine vessel, based upon a current location of the marine vessel relative to the external object; and

engage the propulsion system to perform collision-free path planning and automated guided manipulation of the marine vessel to the external object.

19. The system of claim 12 , wherein the sensed reference points on the external object comprise sensed lateral reference points on the external object.

20. The system of claim 12 , wherein the at least one transducer comprises at least one lateral transducer.

21. The system of claim 20 , wherein the sensed reference points on the external object comprise sensed lateral reference points on the external object.

22. The system of claim 12 , wherein the memorized reference points on the external object comprise a fingerprint.

Assignments (2)
CHANGE OF ADDRESS Recorded May 31, 2022
From: MAID IP HOLDINGS PTY/LTD
To: MAID IP HOLDINGS PTY/LTD
Reel/Frame 060222/0737 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2021
From: TYERS, BRADLEY
To: MAID IP HOLDINGS P/L
Reel/Frame 055965/0886 →
Continuity (10)
Continuation 16398721 · Apr 30, 2019
Continuation 15717526 · Sep 27, 2017
Continuation 15479502 · Apr 5, 2017
Continuation PCTIB2017000325 · Mar 29, 2017
Continuation 14904086
Continuation 13939052 · Jul 10, 2013
Continuation In Part 13590901 · Aug 21, 2012
Continuation In Part 12950990 · Nov 19, 2010
Provisional Application 62314625 · Mar 29, 2016
Related Publication 20210247767A1 · Aug 12, 2021