IP Library › Granted Patent US 11,001,376
Granted Patent B2
US 11,001,376 · App. 16/057,346 · Granted May 11, 2021

Precision pointing mode of an aircraft

Inventors: Steven D. Marzella (Waterbury, CT); David L. Adams (Wallingford, CT); William C. Fell (Stuart, FL); Matthew T. Luszcz (Hamden, CT)
Assignee: Sikorsky Aircraft Corporation
B64C27/57B64D43/02
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Quick Facts
Patent No.
US 11,001,376
App. No.
16/057,346
Granted
May 11, 2021
Kind
B2
Abstract

An aircraft is provided including at least one pilot input and a flight control system n communication with the at least one pilot input. The flight control system is operable in a manual mode and a pointing mode. In the manual mode, a velocity, position, and attitude of the aircraft are controlled manually, and in the pointing mode, at least one of the velocity and position of the aircraft is controlled by the flight control system and at least one of the attitude and heading of the aircraft is controlled manually.

Claims (28)

1. An aircraft comprising:

at least one pilot input;

a flight control system in communication with the at least one pilot input, the flight control system being operable in a manual mode and a pointing mode, wherein in the manual mode, a velocity, a hovering position, and an attitude of the aircraft are controlled manually, and in the pointing mode where the aircraft is controllably aimed at an external point of interest, at least one of the velocity and the hovering position of the aircraft is controlled by the flight control system and at least one of the attitude and heading of the aircraft is controlled manually.

2. The aircraft of claim 1 , wherein the flight control system maintains at least one of the velocity and the hovering position of the aircraft as constant.

3. The aircraft of claim 1 , further comprising at least one sensor for providing environmental configurations and aircraft state data to the flight control system, wherein in response to data from the at least one sensor the flight control system adjusts a control surface of the aircraft to maintain one of the velocity and the hovering position of the aircraft.

4. The aircraft of claim 1 , further comprising a haptic-feedback device operably coupled to the at least one pilot input to indicate to an operator when the attitude of the aircraft is approaching an allowable limit.

5. The aircraft of claim 4 , wherein the haptic-feedback device provides a tactile cue to the operator.

6. The aircraft of claim 4 , wherein the haptic-feedback device provides an audible cue to the operator.

7. The aircraft of claim 4 , wherein the haptic-feedback device provides a visual cue to the operator.

8. The aircraft of claim 7 , wherein the flight control system includes a display and in the pointing mode, at least one attitude boundary line is illustrated on the display and a current attitude of the aircraft is shown on the display relative to the at least one attitude boundary line.

9. The aircraft of claim 1 , wherein the flight control system is selectively operable in the pointing mode in response to a command.

10. The aircraft of claim 9 , wherein the command includes identifying a target as the point of interest at which the aircraft is to be aimed.

11. The aircraft of claim 1 , wherein the flight control system maintains an operational state of the aircraft when the pointing mode is initiated.

12. The aircraft of claim 11 , wherein when the aircraft is hovering when the pointing mode is initiated, the flight control system is configured to maintain the hovering position of the aircraft at a location in three dimensional space.

13. The aircraft of claim 11 , wherein when the aircraft is cruising when the pointing mode is initiated, the flight control system is configured to maintain a cruising at a selected velocity.

14. The aircraft of claim 13 , wherein the selected velocity is a velocity of the aircraft when the pointing mode is initiated.

15. The aircraft of claim 13 , wherein the selected velocity is input by an operator.

16. A system for controlling an aircraft comprising:

at least one control input;

a flight control system for receiving commands from the at least one control input and a display, the flight control system being operable in a manual mode and a pointing mode; and

a haptic-enabled device operable to indicate to an operator of the aircraft that an attitude of the aircraft is approaching an allowable limit,

wherein in the pointing mode, at least one attitude boundary line is illustrated on the display and a current attitude of the aircraft is shown on the display relative to the at least one attitude boundary line.

17. A method of operating an aircraft comprising:

initiating operation in a pointing mode in which the aircraft is controllably aimed at an external point of interest in response to an input;

manually controlling at least one of an attitude and heading of the aircraft; and

automatically maintaining at least one of a hovering position and velocity of the aircraft via a flight control system while at least one of the attitude and heading of the aircraft is manually adjusted.

18. The method of claim 17 , further comprising indicating to an operator when the attitude of the aircraft is approaching an allowable limit.

19. The method of claim 18 , wherein indicating when the attitude of the aircraft is approaching an allowable limit further comprises operating a haptic-feedback device associated with a control operable to manually control the attitude of the aircraft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2018
From: MARZELLA, STEVEN D.; ADAMS, DAVID L.; FELL, WILLIAM C.; LUSZCZ, MATTHEW T.
To: SIKORSKY AIRCRAFT CORPORATION
Reel/Frame 046580/0361 →
Continuity (1)
Related Publication 20200047881A1 · Feb 13, 2020
Cited By (1)
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