IP Library › Granted Patent US 12,722,765
Granted Patent B2
US 12,722,765 · App. 17/970,618 · Granted Sep 1, 2026

Marine propulsion system and marine vessel

Inventor: Yuji Ikegaya (Shizuoka, JP)
Assignee: YAMAHA HATSUDOKI KABUSHIKI KAISHA
B63H25/42B63H21/21B63H25/02B63H2021/216B63H2025/026
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Quick Facts
Patent No.
US 12,722,765
App. No.
17/970,618
Granted
Sep 1, 2026
Kind
B2
Abstract

A marine propulsion system includes a controller configured or programmed to perform a control to move a hull in a lateral direction by driving both a main propulsion device and an auxiliary propulsion device having a maximum output smaller than a maximum output of the main propulsion device.

Claims (44)

1 . A marine propulsion system comprising:

a main propulsion device attached to a stern of a hull and operable to rotate in a right-left direction about a first steering shaft located a first distance rearward of the stern to change a direction of a thrust;

an auxiliary propulsion device attached to the stern, including an electric motor to drive an auxiliary thruster to generate a thrust, operable to rotate in the right-left direction about a second steering shaft located a second distance rearward of the stern greater than the first distance to change a direction of the thrust, and having a maximum output smaller than a maximum output of the main propulsion device; and

a controller configured or programmed to perform a control to move the hull in a lateral direction by driving both the main propulsion device and the auxiliary propulsion device; wherein

the main propulsion device is provided on a centerline of the hull in the right-left direction; and

the auxiliary propulsion device is provided to one side of the centerline of the hull in the right-left direction.

2 . The marine propulsion system according to claim 1 , wherein the controller is configured or programmed to perform a control to move the hull in the lateral direction by positioning an intersection of an output vector of the main propulsion device and an output vector of the auxiliary propulsion device on a straight line extending from a center of gravity of the hull toward a side in the lateral direction in which the hull is to move.

3 . The marine propulsion system according to claim 1 , wherein the controller is configured or programmed to perform a control to move the hull in a diagonal direction in addition to the control to move the hull in the lateral direction by driving both the main propulsion device and the auxiliary propulsion device.

4 . The marine propulsion system according to claim 3 , wherein the controller is configured or programmed to perform a control to move the hull in the diagonal direction by positioning an intersection of an output vector of the main propulsion device and an output vector of the auxiliary propulsion device on a straight line extending from a center of gravity of the hull toward a side in the diagonal direction in which the hull is to move.

5 . The marine propulsion system according to claim 4 , wherein the controller is configured or programmed to perform a control to adjust, according to at least one of a shape of the hull, a size of the hull, and attachment positions of the main propulsion device and the auxiliary propulsion device to the hull, an output of the main propulsion device, a rudder angle of the main propulsion device, an output of the auxiliary propulsion device, and a rudder angle of the auxiliary propulsion device when both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the diagonal direction in response to an operation on an operator to move the hull in the diagonal direction.

6 . The marine propulsion system according to claim 1 , wherein

the main propulsion device includes an engine having a maximum value and a minimum value of a power range larger than a maximum value and a minimum value of a power range of the electric motor to drive a main thruster that generates the thrust; and

the controller is configured or programmed to:

limit the power range of the engine by matching an upper limit value of the power range of the engine with the maximum value of the power range of the electric motor while both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the lateral direction; and

limit the power range of the electric motor by matching a lower limit value of the power range of the electric motor with the minimum value of the power range of the engine while both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the lateral direction.

7 . The marine propulsion system according to claim 1 , wherein the controller is configured or programmed to cause a direction of an output vector of the main propulsion device and a direction of an output vector of the auxiliary propulsion device to be opposite to each other in a forward-rearward direction when the hull is moved in the lateral direction.

8 . The marine propulsion system according to claim 1 , wherein the controller is configured or programmed to perform a control to move the hull in the lateral direction by driving both the main propulsion device and the auxiliary propulsion device when a joystick corresponding to an operator to operate the hull is tilted in the lateral direction.

9 . The marine propulsion system according to claim 1 , wherein

the main propulsion device is an engine outboard motor including an engine to drive a main propeller corresponding to a main thruster that generates the thrust; and

the auxiliary propulsion device is an electric outboard motor including the electric motor to drive an auxiliary propeller corresponding to the auxiliary thruster.

10 . A marine propulsion system comprising:

a main propulsion device attached to a stern of a hull and operable to rotate in a right-left direction about a first steering shaft located a first distance rearward of the stern to change a direction of a thrust;

an auxiliary propulsion device attached to the stern, operable to rotate in the right-left direction about a second steering shaft located a second distance rearward of the stern greater than the first distance to change a direction of a thrust, and having a maximum output smaller than a maximum output of the main propulsion device; and

a controller configured or programmed to perform a control to move the hull in a lateral direction by driving both the main propulsion device and the auxiliary propulsion device; wherein

the main propulsion device is provided on a centerline of the hull in the right-left direction; and

the auxiliary propulsion device is provided to one side of the centerline of the hull in the right-left direction.

11 . A marine vessel comprising:

a hull; and

a marine propulsion system provided on or in the hull; wherein

the marine propulsion system includes:

a main propulsion device attached to a stern of the hull and operable to rotate in a right-left direction about a first steering shaft located a first distance rearward of the stern to change a direction of a thrust;

an auxiliary propulsion device attached to the stern, including an electric motor to drive an auxiliary thruster that generates a thrust, operable to rotate in the right-left direction about a second steering shaft located a second distance rearward of the stern greater than the first distance to change a direction of the thrust, and having a maximum output smaller than a maximum output of the main propulsion device; and

a controller configured or programmed to perform a control to move the hull in a lateral direction by driving both the main propulsion device and the auxiliary propulsion device; wherein

the main propulsion device is provided on a centerline of the hull in the right-left direction; and

the auxiliary propulsion device is provided to one side of the centerline of the hull in the right-left direction.

12 . The marine vessel according to claim 11 , wherein the controller is configured or programmed to perform a control to move the hull in the lateral direction by positioning an intersection of an output vector of the main propulsion device and an output vector of the auxiliary propulsion device on a straight line extending from a center of gravity of the hull toward a side in the lateral direction in which the hull is to move.

13 . The marine vessel according to claim 11 , wherein the controller is configured or programmed to perform a control to move the hull in a diagonal direction in addition to the control to move the hull in the lateral direction by driving both the main propulsion device and the auxiliary propulsion device.

14 . The marine vessel according to claim 13 , wherein the controller is configured or programmed to perform a control to move the hull in the diagonal direction by positioning an intersection of an output vector of the main propulsion device and an output vector of the auxiliary propulsion device on a straight line extending from a center of gravity of the hull toward a side in the diagonal direction in which the hull is to move.

15 . The marine vessel according to claim 14 , wherein the controller is configured or programmed to perform a control to adjust, according to at least one of a shape of the hull, a size of the hull, and attachment positions of the main propulsion device and the auxiliary propulsion device to the hull, an output of the main propulsion device, a rudder angle of the main propulsion device, an output of the auxiliary propulsion device, and a rudder angle of the auxiliary propulsion device when both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the diagonal direction in response to an operation on an operator to move the hull in the diagonal direction.

16 . The marine vessel according to claim 11 , wherein

the main propulsion device includes an engine having a maximum value and a minimum value of a power range larger than a maximum value and a minimum value of a power range of the electric motor to drive a main thruster that generates the thrust; and

the controller is configured or programmed to:

limit the power range of the engine by matching an upper limit value of the power range of the engine with the maximum value of the power range of the electric motor while both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the lateral direction; and

limit the power range of the electric motor by matching a lower limit value of the power range of the electric motor with the minimum value of the power range of the engine while both the main propulsion device and the auxiliary propulsion device are driven to move the hull in the lateral direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2022
From: IKEGAYA, YUJI
To: YAMAHA HATSUDOKI KABUSHIKI KAISHA
Reel/Frame 061491/0540 →
Priority Claims (1)
JP 2021-180106 · Nov 4, 2021 · national
Continuity (1)
Related Publication 20230139789A1 · May 4, 2023
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