Method for Maneuvering an Electric Taxi Drive System Driven Aircraft into an Airport Ramp Parking Location
20220097831 · 2022-03-31
Assignee
Inventors
Cpc classification
B64C25/405
PERFORMING OPERATIONS; TRANSPORTING
Y02T50/80
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B64C25/40
PERFORMING OPERATIONS; TRANSPORTING
G05D1/00
PHYSICS
Abstract
The present invention provides a method for maneuvering and aligning aircraft equipped and driven during ramp ground travel with landing gear wheel-mounted electric taxi drive systems that have deviated from taxi line travel paths and for maneuvering the electric taxi drive system-driven aircraft to park accurately to align with locations of parking stops when the aircraft nose landing gear wheels stop beyond or short of a parking stop. The aircraft pilot can, without waiting for a tug or starting aircraft engines, precisely maneuver the aircraft with the electric taxi drive systems while viewing the taxi line and parking stop location in real time with an optional camera and sensor system while maneuvering the aircraft in forward or reverse and lateral directions to align the aircraft nose wheels with the taxi line path and to accurately position the nose landing gear wheels at the parking stop.
Claims
1. A method for precisely maneuvering an electric taxi drive system-equipped aircraft along an airport ramp area ground travel path to an airport ramp parking location, comprising: a. providing aircraft equipped with landing gear wheel-mounted electric taxi drive systems operable to drive the equipped aircraft during ground travel in the airport ramp area; b. providing a plurality of parking locations for aircraft in the airport ramp area and providing for each of the plurality of aircraft parking locations a taxi line travel path corresponding to a ramp ground travel path to an aircraft parking location and a parking stop at each parking location corresponding to a stop location for nose landing gear wheels of the equipped aircraft parked accurately in the aircraft parking location; c. driving an equipped aircraft with the electric taxi drive systems along a ramp taxi line travel path for a parking location assigned to the equipped aircraft, maneuvering the equipped aircraft with the electric taxi drive systems along the taxi line travel path to maintain the nose landing gear wheels in alignment with the taxi line travel path, and stopping the equipped aircraft at the assigned parking location with the nose landing gear wheels aligned with the parking stop; d. when the equipped aircraft's nose landing gear wheels deviate from alignment with the taxi line travel path as the equipped aircraft is driven along the taxi line travel path, maneuvering the equipped aircraft with the electric taxi drive systems in forward, reverse, and lateral directions as required to align the nose landing gear wheels with the taxi line travel path, and continuing to drive the equipped aircraft to the assigned parking location with the nose landing gear wheels in alignment with the taxi line travel path; and e. when the equipped aircraft stops at the assigned parking location with the nose landing gear wheels unaligned with the parking stop, maneuvering the equipped aircraft with the electric taxi drive systems in forward or reverse directions as required to align the nose landing gear wheels with the parking stop, and aligning the equipped aircraft nose landing gear wheels with the parking stop.
2. The method of claim 1, further comprising when the stopped equipped aircraft stops at the assigned parking location with the unaligned nose landing gear wheels located a distance before the parking stop, maneuvering the stopped equipped aircraft with the electric taxi drive systems in a forward direction for the distance required to align the nose landing gear wheels with the parking stop.
3. The method of claim 1, further comprising when the equipped aircraft stops at the assigned parking location with the unaligned nose landing gear wheels located a distance past the parking stop, maneuvering the stopped equipped aircraft with the electric taxi drive systems in a reverse direction for the distance required to align the nose landing gear wheels with the parking stop.
4. The method of claim 1, further comprising when the nose landing gear wheels of the equipped aircraft deviate from alignment with the taxi line travel path during electric taxi drive system-powered travel toward the assigned parking location, maneuvering the equipped aircraft with the electric taxi drive systems and with an aircraft nosewheel steering system laterally and in forward and reverse directions as required to align the nose landing gear wheels with the taxi line travel path, and continuing to drive the equipped aircraft with the electric taxi drive systems to the assigned parking location.
5. The method of claim 4, further comprising when the nose landing gear wheels of the equipped aircraft have moved out of alignment with the taxi line travel path and are driving the aircraft to the right of the taxi line travel path, maneuvering the equipped aircraft laterally to the left, and aligning the nose landing gear wheels with the taxi line travel path.
6. The method of claim 4, further comprising when the nose landing gear wheels of the equipped aircraft have moved out of alignment with the taxi line travel path and are driving the aircraft to the left of the taxi line travel path, maneuvering the equipped aircraft laterally to the right, and aligning the nose landing gear wheels with the taxi line travel path.
7. The method of claim 1, further comprising providing the equipped aircraft with a camera and sensor system comprising at least cameras operably positioned in external locations on the aircraft to provide views of the nose landing gear wheels, the taxi line travel path, and the parking stop to a pilot in a cockpit of the equipped aircraft.
8. The method of claim 7, further comprising operably positioning the cameras in external locations on the equipped aircraft comprising at least on an aircraft fuselage ground-facing surface adjacent to the nose landing gear wheels and adjacent to a tail, and providing to the pilot real time views of the nose landing gear wheels, the taxi line travel path, and the parking stop as the equipped aircraft is driven with the electric taxi drive systems along the taxi line travel path and to the parking stop.
9. The method of claim 8, further comprising providing to the pilot the real time views of the nose landing gear wheels and the taxi line travel path when the stopped equipped aircraft's nose landing gear wheels are positioned beyond the assigned parking stop location, maneuvering the stopped equipped aircraft with the electric taxi drive systems in a reverse direction using the real time views, and aligning the nose landing gear wheels with the parking stop.
10. The method of claim 8, further comprising providing to the pilot the real time views of the nose landing gear wheels and the taxi line travel path when the stopped equipped aircraft's nose landing gear wheels are positioned short of the assigned parking stop location, maneuvering the stopped equipped aircraft with the electric taxi drive systems in a forward direction using the real time views, and aligning the nose landing gear wheels with the parking stop.
11. The method of claim 8, further comprising providing to the pilot the real time views of the nose landing gear wheels and the taxi line travel path when the nose landing gear wheels of the equipped aircraft deviate out of alignment with the taxi line travel path as the equipped aircraft is driven with the electric taxi drive systems along the taxi line travel path toward the assigned parking location, maneuvering the equipped aircraft with the electric taxi drive systems and an aircraft nosewheel steering system in forward, reverse, and lateral directions as indicated by the real time views to realign the nose landing gear wheels with the taxi line, and driving the realigned equipped aircraft with the electric taxi drive systems along the taxi line travel path to the parking stop.
12. The method of claim 1, further comprising providing a visual guidance docking system at the plurality of parking locations and visual signals representing the taxi line travel path and the parking stop for each parking location, communicating locations of taxi lines and parking stops with the visual signals to pilots in cockpits of the equipped aircraft and guiding alignment of the equipped aircraft nose landing gear wheels with the taxi lines and parking stops, and maneuvering the equipped aircraft with the electric taxi drive systems as required to maintain alignment with the taxi lines and stops.
13. The method of claim 1, further comprising maneuvering the equipped aircraft in forward, reverse, or lateral directions as required with the electric taxi drive systems to align the equipped aircraft with a passenger loading bridge at the assigned parking location.
14. A method for precisely maneuvering and parking electric taxi drive system-equipped aircraft in an airport ramp area, comprising: a. providing aircraft equipped with pilot-controllable landing gear wheel-mounted electric taxi drive systems operable to move aircraft during ground travel, with a nose landing gear wheel steering system, and with a camera and sensor system mounted in exterior aircraft locations and operable to transmit real time views of at least nose landing gear wheels of the equipped aircraft to a processor or directly to a cockpit of the equipped aircraft; b. providing airport ramp parking locations for the equipped aircraft with a taxi line to guide the equipped aircraft to park accurately at a parking stop location at each parking location; c. driving the equipped aircraft with the electric taxi drive systems to a designated parking location along the taxi line for the parking location to the parking stop location with the camera and sensor system operating and transmitting the real time views of the nose landing gear wheels and the taxi line and the parking stop location to the cockpit; d. using the transmitted real time views of the nose landing gear wheels and maintaining the nose landing gear wheels in alignment with the taxi line as the equipped aircraft is driven with the electric taxi drive systems along the taxi line to the designated parking location; and e. using the transmitted real time views of the nose landing gear wheels and the parking stop location at the designated equipped aircraft parking location, maneuvering the equipped aircraft with the electric taxi drive systems, and stopping the equipped aircraft with the nose landing gear wheels accurately aligned with the parking stop location.
15. The method of claim 14, further comprising when the transmitted real time views show that the nose landing gear wheels are not aligned with and have deviated from the taxi line, maneuvering the equipped aircraft with the electric taxi drive systems in forward, reverse, and lateral directions as required to realign the nose landing gear wheels with the taxi line, and continuing to drive the equipped aircraft with the electric taxi drive systems and the nose landing gear wheels aligned with the taxi line.
16. The method of claim 14, further comprising when the transmitted real time views show that the nose landing gear wheels are not accurately aligned with the parking stop location, maneuvering the equipped aircraft with the electric taxi drive systems in forward or reverse directions as required to accurately position the nose landing gear wheels in alignment with the parking stop location.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
DESCRIPTION OF THE INVENTION
[0022] As noted above, there are instances when an aircraft traveling into a parking location at an airport terminal gate or stand moves beyond the parking stop location and undershoots or overshoots the stop location so that the nose landing gear wheels of the aircraft are positioned short of or beyond, instead of aligned with the stop location. There may also be instances during ramp ground travel when an aircraft's actual ground travel path deviates to the right or left of the path marked by a designated taxi line or lead-in line for the aircraft's assigned parking location. When this happens, it may be more difficult to align and connect a passenger loading bridge to the aircraft, in-ground services may not be able to connect to corresponding connections on the lower aircraft fuselage, and there may not be sufficient safe space between the aircraft and the terminal for ground service equipment to move. The incorrect position of the aircraft within the ramp area, whether due to the deviation of its ramp travel path from the taxi-in line or the location of the nose landing gear wheels short of or beyond the parking location stop, may also impact the movement of other aircraft. As noted above, the current process for moving an aircraft that is not aligned with a parking stop is to attach a tug to the aircraft and push it back or tow it forward the distance required to align the nose landing gear wheels with the stop location. This process may also be used to align aircraft that have deviated from a taxi line during ground travel into a parking location. The disadvantages of maneuvering aircraft with a tug in these situations are described above. The present invention provides a method for easily and safely maneuvering aircraft equipped with landing gear wheel-mounted electric taxi drive systems and, optionally, with a camera and sensor system, in reverse and in forward directions to position the nose landing gear wheels in alignment with the stop location and park at a gate or stand. The present invention also provides a method for correcting deviations of the aircraft's ground travel path at any point along the taxi line path by maneuvering the aircraft with the landing gear wheel-mounted electric taxi systems and realigning the aircraft's nose landing wheels with the taxi line.
[0023] The terms “airport terminal” and “terminal” include an airport terminal building and like structures, whether or not attached to a terminal building. The terms “parking location,” “gate,” and “stand” all are used to refer to places where aircraft are parked at or near an airport terminal. The terms “ramp” and “ramp area” will be used herein to refer to the area at an airport that is intended to accommodate aircraft for the loading and unloading of passengers, mail, cargo, fueling, parking, or maintenance. The term “ramp” is synonymous with the term “apron,” which is also used to identify this airside area at an airport. The terms “taxi line” and “lead-in line” both refer to a guide path to be followed by the aircraft within the ramp area to a designated parking location. As discussed herein, these lines are typically painted on the ground to mark them. A “stop location” or “stop” refers to a specific position or coordinate where the aircraft's nose landing gear wheels are expected to stop and may or may not be marked on the ground. Different aircraft types have may different stop positions and locations at an airport parking location.
[0024] Aircraft may be parked at parking locations with or without passenger loading bridges. The terms “loading bridge” and “passenger loading bridge” refer to structures attached to an airport terminal used to transfer passengers between the terminal and aircraft and are contemplated to include known types of loading bridges, which may be fixed, may be extendible and retractable, or may have other mechanisms for providing a typically enclosed connection between a terminal and an aircraft for passenger movement.
[0025] “Electric taxi drive systems,” “drive systems,” and “electric taxi systems” refer to pilot-controllable landing gear wheel-mounted drive systems used to drive aircraft independently of and without reliance on operation of aircraft main engines and tugs or external tow vehicles. Electric taxi drive systems may include landing gear wheel-mounted electric drive motors, gear or roller traction drive systems, clutches, and other components activatable to power landing gear wheels and drive the aircraft during ground travel in response to pilot control. An example of one electric taxi drive system developed by Applicant to drive an aircraft during ground travel without reliance on operation of the aircraft's main engines or attachment to tugs is described in commonly owned U.S. Pat. No. 10,308,352, the disclosure of which is fully incorporated herein in its entirety by reference. Other drive systems using drive motors that are not electric, including, for example, hydraulic or pneumatic drive motors, may also drive aircraft in connection with the automatic aircraft parking system and method of the present invention and are contemplated to be included within the terms “electric taxi drive systems” and “drive systems.” An electric taxi drive system is advantageously mounted completely within a volume defined by walls of a landing gear wheel in one or more nose or main landing gear wheels. In a preferred embodiment, electric taxi drive systems are mounted completely within defined wheel wall volumes in both nose landing gear wheels and are controlled by a pilot or flight crew from the aircraft cockpit with controls designed to operate the electric taxi drive system, power the nose landing gear wheels, and drive the aircraft during ground travel without reliance on the aircraft's main engines and external assistance from tugs.
[0026] Referring to the drawings, which are not drawn to scale,
[0027] The travel path of the aircraft 10 to its assigned arrival parking location, as discussed above, corresponds to the path defined by a taxi or lead-in line 16, and ends at a parking stop location 18. The location of the taxi line 16 and the location of the stop 18 may be determined, for example, by the size of the ramp area, the number of gates, whether loading bridges or stairs are used for passenger transfer, the kinds and lengths of loading bridges, and the types of aircraft parking in the terminal parking location. As noted above, the taxi lines and the parking stop locations may be represented by actual lines painted on the ground surface and by other materials, such as reflective strips applied to the ground surface. At an increasing number of airports where visual guidance docking systems are in use, there may or may not be actual lines on the ground surface for the aircraft to follow. Visual signals on terminal or other displays may communicate a taxi line path and/or a stop location to the aircraft cockpit crew. The method described herein is contemplated to encompass both arrangements.
[0028] The arriving aircraft 10 shown in
[0029] Ground personnel (not shown) may guide the pilot driving the aircraft along the taxi line 16 to the stop location 18 and communicate to the pilot whether the aircraft nose landing gear wheels 20 are aligned with the taxi line 16 and that the nose landing gear wheels have reached the stop location. Ground personnel may also guide the pilot in maneuvering the aircraft as required to ensure and correct alignment of the aircraft with the taxi line path and the parking stop location. The aircraft may also be provided with a camera and sensor system, discussed in detail in connection with
[0030]
[0031] If, instead of overshooting the stop location 18, the aircraft 10 stops short of the stop, for example at the location shown in
[0032] Maneuvering an aircraft into a parking stop location in either a forward or a reverse direction with electric taxi drive systems is a far quicker, simpler, and safer operation than using engines or tugs to move the aircraft. Additionally, these maneuvers can be performed with greater precision to ensure that aircraft are accurately parked and in alignment with the designated stop location. When a camera and sensor system is provided on the aircraft, a view of the taxi line 16 and parking stop 18 may be provided to the cockpit to assist the cockpit crew and pilot in maneuvering the aircraft in both forward and reverse directions. The pilot may more precisely maneuver the aircraft 10 forward as required to align the nose landing gear wheels 20 with the stop location 18 when the nose landing gear wheels have stopped short of the location of the stop 18 and are in the position shown in
[0033]
[0034] The maneuvers just described may be particularly useful when an aircraft has reached the parking stop location and is not accurately positioned to connect to a passenger loading bridge. As indicated, some passenger loading bridges are fixed and have fixed lengths; extendible passenger loading bridges may be limited in how far they may extend. It might be necessary to maneuver an aircraft when it reaches the parking stop location to move a small distance in a reverse or forward direction, as well as a small distance laterally to the left since loading bridges are typically connected to an aircraft's left doors, to precisely dock the aircraft with the loading bridge.
[0035]
[0036] The foregoing aircraft maneuvering capabilities are enhanced by providing a camera and sensor system with camera and sensor elements that may be mounted in positions on the exterior of the aircraft that have been determined to capture a view of selected spaces in the aircraft's external ramp environment as the aircraft is driven with the nose landing gear wheel-mounted electric taxi drive systems. For example, real time views of the aircraft nose landing gear wheels 20 and the ground spaces around the nose landing gear wheels 20 are particularly important to help the pilot and cockpit crew determine the location of the nose landing gear wheels 20 in relation to the locations of the taxi line 16 and the stop 18 and to accurately maneuver the aircraft to align with the taxi line and with the stop. Real time views of the ground surface below the aircraft fuselage and near the tail end of the aircraft may help the pilot determine the location of the taxi line as the aircraft is driven in reverse during maneuvers to align the aircraft with the taxi line or the stop. Real time views of the aircraft nose area may help the pilot maneuver the aircraft more accurately to align its travel path with the taxi line and to avoid collisions with ground service vehicles and equipment as the pilot maneuvers an aircraft that has veered off the taxi line path back into alignment. Cameras (represented schematically) with or without sensors may be positioned in various locations on the exterior of the aircraft 10. Preferred locations where cameras may be positioned to assist with the aircraft maneuvers described herein are shown in
[0037] Views of the nose landing gear wheels may be transmitted to a processor (not shown) or directly to the cockpit. Advantageously, the cameras will provide real time views to the cockpit of the nose landing gear wheels 20, the taxi line 16, and the parking stop 18 while the aircraft 10 is driven with the electric taxi drive systems 22 through the ramp area and into a parking location. This will enable the pilot to maneuver the aircraft with the electric taxi systems as required to remain aligned with the taxi line 16 and to stop with the aircraft nose landing gear wheels precisely at the parking stop 18. If, as described above, the aircraft must be maneuvered in reverse or forward to the parking stop location, or to re-align the aircraft's travel path, the cameras described should facilitate operation of the electric taxi drive system to conduct these aircraft maneuvers.
[0038] While the present invention has been described with respect to preferred embodiments, this is not intended to be limiting, and other arrangements and structures that perform the required functions are contemplated to be within the scope of the present invention.
INDUSTRIAL APPLICABILITY
[0039] The method of the present invention will have its primary applicability where it is desired to easily and precisely maneuver and reposition aircraft equipped and driven with landing gear wheel-mounted electric taxi drive systems during ramp ground travel to align with a lead-in or taxi line and with a parking stop at an airport terminal parking location so that when the equipped aircraft have deviated from lead-in or taxi line travel paths or have undershot or overshot parking stops, they may be aligned with the lead-in or taxi line and the parking stop without relying on tugs or re-starting engines.