IP Library Granted Patent US 11,287,095
Granted Patent B2
US 11,287,095 · App. 16/040,408 · Granted Mar 29, 2022

Lighting system for an aircraft

Inventor: Christian Tsao (Rosny Sous Bois, FR)
Assignee: SAFRAN ELECTRONICS & DEFENSE COCKPIT SOLUTIONS
F21S41/16B64D47/04F21S41/24
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Quick Facts
Patent No.
US 11,287,095
App. No.
16/040,408
Granted
Mar 29, 2022
Kind
B2
Abstract

Lighting system for an aircraft, comprising at least one optical acquisition device, at least one long-range headlight each comprising at least one light source ( 3 a, 3 b ), closed-loop control means ( 4 ), and a means ( 5 ) for controlling the light sources ( 3 a, 3 b ) as a function of the data received from the optical acquisition device and from a data network of the aircraft in such a manner that the lighting system produces at least one beam for adaptive illumination with respect to the flight and taxi phases of the aircraft so as to illuminate at least one predefined region of the space around the aircraft.

Claims (17)

1. A lighting system for an aircraft, comprising at least one optical acquisition device, at least one long-range headlight, each comprising at least one light source, closed-loop control means, and a means for controlling the light sources as a function of the data received from the optical acquisition device and from a data network of the aircraft in such a manner that the lighting system produces at least one beam for adaptive illumination with respect to the flight and taxi phases of the aircraft so as to illuminate at least one predefined region of the space around the aircraft, the spatial distribution of the light and the direction of the at least one beam is determined by the optical acquisition device, and corrected according to the flight and taxi phases, the long-range headlight comprising at least one centered optical system with variable focal point or at least one centered optical system with fixed focal point whose focal plane is occupied by a light source, together with means of moving the light source such that the direction of the light beam may be inclined with respect to the axis of the centered optical system and/or moved perpendicularly to the focal plane such that the aperture of the beam may be enlarged,

the long-range headlight further comprising a glass with at least two striated and prismatic regions disposed at the exit of the centered optical system allowing at least two different lighting beams to be generated.

2. The lighting system according to claim 1 , in which the long-range headlight is designed to illuminate an aircraft runway to a distance of at least 300 m.

3. The lighting system according to claim 1 , in which the long-range headlight comprises a high-speed scanning device equipped with at least two rotary reflecting surfaces, whose axes of rotation are orthogonal and disposed in such a manner that the beam at the exit of the light source is successively reflected on one then the other of the reflecting surfaces.

4. The lighting system according to claim 1 , in which the long-range headlight comprises an assembly of at least two luminophores, each designed to absorb the light emitted by a light source and to re-emit white light.

5. The lighting system according to claim 1 , in which the light source is a light source of the laser type or a light source of the laser type obtained by combination of a red monochromatic light source of the laser type, of a green monochromatic light source of the laser type and of a blue monochromatic light source of the laser type.

6. A method for controlling a lighting system of claim 1 , the method comprising the following steps:

an image of the scene in front of the airplane is acquired with at least one optical acquisition device,

a shape recognition is performed on the acquired image of the scene in order to distinguish the various objects present including the runway, the ground signaling, and any potential obstacles,

flight information is obtained from the data network of the aircraft,

the flight phase in progress is determined according to the acquired information and of a predetermined model,

the spatial distribution of the light and the direction of the at least one beam is determined by the optical acquisition device, and corrected according to the flight and taxi phases,

the setpoints are determined corresponding to the direction of the light sources, for the closed-loop control means and, when it is applicable, for the means of moving at least one light source according to the lighting beams to be illuminated, and also their directions and their distributions.

7. The method according to claim 6 , in which the flight information comprises at least one value from amongst the speed, the altitude, the attitude angle, the thrust, the state of inversion of the thrust, the contact of the wheels with the ground, the position of the attack edges and of the flaps.

8. The method according to claim 6 , in which, for determining at least one lighting beam to be turned on, together with their direction and their distribution,

for each lighting beam to be turned on,

the vertical angle, the horizontal angle and the aperture of the beam are determined as a function of predetermined values of the coordinates and of the extent of the area to be illuminated, in such a manner that the beam illuminates a predefined region of the space around the aircraft, then the determined values are corrected as a function of the flight data comprising at least the respective positions of the runway and of the aircraft.

Assignments (2)
CHANGE OF NAME Recorded Jun 8, 2021
From: ZODIAC AERO ELECTRIC
To: SAFRAN ELECTRONICS & DEFENSE COCKPIT SOLUTIONS
Reel/Frame 056514/0300 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2018
From: TSAO, CHRISTIAN
To: ZODIAC AERO ELECTRIC
Reel/Frame 046600/0108 →
Priority Claims (1)
FR 1757213 · Jul 28, 2017 · national
Continuity (1)
Related Publication 20190032879A1 · Jan 31, 2019