System and method for monitoring aircraft movements while aground
A system and a method for monitoring one or more ground paths include an imaging device configured to acquire one or more images of the one or more ground paths. A control unit is in communication with the imaging device. The control unit is configured to receive the one or more images from the imaging device, detect one or more objects within the one or more images, track motion of the one or more objects, and output an alert signal to an aircraft in response to the one or more objects moving in relation to the aircraft.
1 . A system comprising:
a housing that contains an imaging device configured to acquire one or more images of one or more ground paths, wherein the housing is sized and shaped as a runway edge lighting device; and
a control unit in communication with the imaging device, wherein the control unit is configured to:
receive the one or more images from the imaging device,
detect one or more objects within the one or more images,
track motion of the one or more objects within the one or more images, and
output an alert signal to one or more vehicles in response to the one or more objects moving in relation to the one or more vehicles.
2 . The system of claim 1 , wherein the one or more images of the one or more ground paths include at least a portion of a final approach path for an aircraft.
3 . The system of claim 1 , wherein the control unit is configured to use computer vision to detect the one or more objects, and track the motion of the one or more objects.
4 . The system of claim 1 , wherein the control unit does not use deep learning, machine learning, or artificial intelligence.
5 . The system of claim 1 , wherein the one or more objects comprise one or more of another aircraft, a ground vehicle, a human, or wildlife.
6 . The system of claim 1 , wherein the imaging device comprises one or more video cameras, and wherein the one or more images are one or more video images.
7 . The system of claim 1 , wherein the control unit is configured to output the alert signal to a user interface of the one or more vehicles.
8 . The system of claim 7 , wherein the alert signal is configured to be one or more of shown on a display of the user interface, broadcast as an audio message, or generated as a tactile response.
9 . The system of claim 1 , wherein the housing also contains the control unit.
10 . The system of claim 1 , wherein the housing is configured to be disposed on or proximate to the one or more ground paths.
11 . The system of claim 1 , wherein the control unit is further configured to insert one or more boundaries around the one or more objects within the one or more images.
12 . The system of claim 1 , wherein the control unit is further configured to highlight a distance between the one or more vehicles and the one or more objects within the one or more images, and wherein the control unit is configured to highlight the distance by inserting and showing, on a display, one or more lines between the one or more vehicles and the one or more objects.
13 . A method for a system, the comprising:
a housing that contains an imaging device configured to acquire one or more images of the one or more ground paths, wherein the housing is sized and shaped as a runway edge lighting device; and
a control unit in communication with the imaging device, wherein the control unit is configured to:
receive the one or more images from the imaging device,
detect one or more objects within the one or more images,
track motion of the one or more objects, and
output an alert signal to one or more vehicles in response to the one or more objects moving in relation to the one or more vehicles,
the method comprising:
receiving, by the control unit, the one or more images from the imaging device;
detecting, by the control unit, the one or more objects within the one or more images;
tracking, by the control unit, the motion of the one or more objects within the one or more images; and
outputting, by the control unit, the alert signal to the one or more vehicles in response to the one or more objects moving in relation to the one or more vehicles.
14 . The method of claim 13 , wherein said detecting and tracking comprises using computer vision, and wherein said detecting and tracking do not include using deep learning, machine learning, or artificial intelligence.
15 . The method of claim 13 , wherein the one or more objects comprise one or more of another aircraft, a ground vehicle, a human, or wildlife.
16 . The method of claim 13 , wherein the imaging device comprises one or more video cameras, and wherein the one or more images are one or more video images.
17 . The method of claim 13 , wherein said outputting comprises outputting the alert signal to a user interface of the one or more vehicles, and wherein the method further comprises one or more of showing the alert signal on a display of the user interface, broadcasting the alert signal as an audio message, or generating the alert signal as a tactile response.
18 . The method of claim 13 , wherein the housing also contains the control unit, and wherein the housing is disposed on or proximate to the one or more ground paths.
19 . The method of claim 13 , further comprising:
inserting, by the control unit, one or more boundaries around the one or more objects within the one or more images; and
highlighting, by the control unit, a distance between the one or more vehicles and the one or more objects within the one or more images, wherein said highlighting comprises inserting and showing, on a display, one or more lines between the one or more vehicles and the one or more objects.
20 . A system comprising:
a housing configured to be disposed on or proximate to one or more ground paths, wherein the one or more images of the one or more ground paths include at least a portion of a final approach path for an aircraft, wherein the housing is sized and shaped as a runway edge lighting device;
an imaging device retained within the housing, the imaging configured to acquire one or more images of the one or more ground paths, wherein the imaging device comprises one or more video cameras, and wherein the one or more images are one or more video images; and
a control unit retained within the housing, the control unit in communication with the imaging device, wherein the control unit is configured to:
receive the one or more images from the imaging device,
detect, by computer vision, one or more objects within the one or more images, wherein the one or more objects comprise one or more of another aircraft, a ground vehicle, or wildlife,
insert one or more boundaries around the one or more objects within the one or more images,
highlight a distance between an aircraft and the one or more objects within the one or more images,
track, by computer vision, motion of the one or more objects within the one or more images, and
output an alert signal to the aircraft in response to the one or more objects moving in relation to the aircraft, wherein the alert signal is configured to be one or both of shown on a display of a user interface, or broadcast as an audio message,
wherein the control unit does not use deep learning, machine learning, or artificial intelligence.
21 . The system of claim 1 , wherein the one or more ground paths comprise a runway, wherein the housing complies with regulations for runway edge lighting promulgated by one or more regulatory authorities, wherein the housing is mounted at an end of one of the runway, and wherein the housing comprises:
a base secured to a portion of the end of the runway;
a column upwardly extending from base; and
a head connected to the column opposite from the base, wherein the head includes an aperture through which the image device acquired the one or more images.