Systems and methods for selectively altering a ground proximity message
Systems and methods for selectively altering a ground proximity warning message. In an embodiment, a ground proximity warning system for a flight vehicle includes a processor that is configured to generate a look-ahead envelope that defines a region extending outwardly from the flight vehicle and to generate a terrain proximity message when the defined region intersects a terrain feature. An interface device is coupled to the processor that is operable to configure the system in a first operating mode wherein the generated terrain proximity message is selectively suppressed, and a second operating mode wherein the terrain proximity message is not suppressed.
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Terrain Awareness and Warning Systems (TAWS) for aircraft such as fixed wing and rotary wing vehicles have significantly contributed to the safety of flight. Briefly, and in general terms, the TAWS is operable to acquire selected flight-related information from various aircraft systems and to obtain terrain information for topological features surrounding the aircraft. The TAWS is configured to process the flight-related information and the terrain information to determine if a potential safety condition due to terrain proximity is present. If a terrain proximity hazard is determined to exist, the TAWS provides a flight crew with a suitable audible and/or visual warning that timely alerts the flight crew regarding the detected terrain hazard.
Although TAWS are generally effective in enhancing the safety of flight, drawbacks nevertheless exist. For example, in certain geographical locations, the aircraft may be intentionally operated relatively close to the surrounding terrain so that numerous terrain proximity messages are generated by the TAWS and communicated to the flight crew. In such cases, the flight crew is generally capable of maintaining sufficient visual contact with the surrounding terrain so that the aircraft may be safely navigated along a desired flight path without assistance from the TAWS. Accordingly, the numerous terrain proximity messages may constitute a nuisance that may distract the flight crew from other important flight-related tasks. Thus, in order to eliminate the undesired, or “nuisance” terrain warnings, the flight crew may deactivate the TAWS so that the nuisance messages are suppressed. An obvious shortcoming associated with deactivation of the TAWS is that an undesired terrain incursion may nevertheless occur during a temporary period of flight crew inattention to the visual monitoring of surrounding terrain.
It would therefore be desirable to provide systems and methods that permit the ground proximity messages to be selectively suppressed by the flight crew to eliminate “nuisance” messages, while desirably maintaining the considerable flight safety aspects of TAWS.
BRIEF SUMMARY OF THE INVENTIONThe present invention includes systems and methods for selectively altering a ground proximity warning message. In one aspect, a ground proximity warning system for a flight vehicle includes a processor that is configured to generate a look-ahead envelope that defines a region extending outwardly from the vehicle, such as an aircraft or surface or subsurface vessel, and to generate a terrain proximity message when the defined region intersects a terrain feature. An interface device is coupled to the processor that is operable to configure the system in a first operating mode wherein the generated terrain proximity message is selectively suppressed, and a second operating mode wherein the terrain proximity message is not suppressed.
Embodiments of the present invention are described in detail below with reference to the following drawings.
The present invention relates to systems and methods for selectively altering a ground proximity alert level in a Terrain Awareness and Warning Systems (TAWS). Many specific details of certain embodiments of the invention are set forth in the following description and in
The navigational sensors may also include other known devices that provide navigational information to the look-ahead generator 12 based upon the dynamic behavior of the aircraft. For example, the navigational sensors may include an inertial navigation system (INS) that includes one or more internal inertial-based reference sources that generate navigational information for the aircraft. Alternately, the navigational sensors may also include a flight management computer system (FMCS) that is operable to provide navigational information based upon the inertial-based reference sources, and also based upon satellite-based and/or ground-based radio navigation systems.
The system 10 also includes a memory device 26 that is suitably configured to store a searchable database that contains data pertaining to anticipated flight operations for the aircraft. Accordingly, the memory device 26 may include data that describes various geographical features and elevations of the terrain for an anticipated flight route. The memory device 26 may further include data pertaining to various man-made geographical features, such as locations, elevations and runway information for various landing sites along the anticipated flight route. The memory device 26 may further include data regarding various navigational aids (NAVAIDS) and air route intersections that may be used along the anticipated flight route, and may further include one or more “waypoint” locations, as are generally known in connection with GPS-based systems.
With continued reference to
A display device 30 and an aural warning generator 32 are also coupled to the look ahead warning generator 12 to communicate respective aural and visual messages to the flight crew. Accordingly, the display device 30 may include devices operable to display graphical and alphanumeric data, such as a cathode ray tube (CRT) display, and a liquid crystal display (LCD) device, although other suitable display devices may also be used. Alternately, the display device 30 may include an illumination device that is positioned to be within a field of view of the flight crew that illuminates when a suitable signal is received from the look ahead warning generator 12. The aural warning generator 32 may also include a speech synthesizer that is configured to generate an artificial representation of a human voice to communicate terrain proximity messages having speech-based content to the flight crew. Alternately, the aural warning generator 32 may be configured to emit one or more audible tones at predetermined audio frequencies that are recognizable as corresponding to a selected terrain proximity condition.
The system 10 also includes an interface device 34 that is operable to permit the flight crew to select a first operating mode, and a second operating mode for the system 10. In the first operating mode, the flight crew may selectively suppress terrain proximity messages generated by the look-ahead warning generator 12, so that an aural terrain proximity message is suppressed while a visual terrain proximity message that is displayable on the display device 30 is presented to the flight crew. Alternately, the aural terrain proximity message may be presented, while the visual terrain proximity message is suppressed. In another particular embodiment, the aural terrain proximity message and the visual terrain proximity message may be simultaneously suppressed when the first operating mode is selected. Suppression of the terrain proximity messages in the first operating mode thus advantageously allows the flight crew to selectively suppress nuisance messages that may otherwise interfere with the operation of the aircraft. For example, when the aircraft is navigated in an area where the look-ahead envelope either continuously or intermittently intersects terrain features surrounding the aircraft, the corresponding terrain proximity warnings may constitute a significant distraction to the flight crew. Although terrain proximity messages may be selectively suppressed by means of the interface device 34, it is understood that the suppression of the terrain proximity messages may be overridden by the look ahead warning generator 12 in cases where the surrounding terrain is determined to constitute a threat to the safety of flight of the aircraft. In the second operating mode, the terrain proximity massages are not suppressed, and all messages are presented to the flight crew. The interface device 34 may be manually actuated by the flight crew to suppress terrain proximity messages generated by the generator 12, or it may actuated by other means. For example, in a specific embodiment, the interface device 34 may include a speech recognition device that is operable to receive verbal commands from the flight crew to configure the system 10 in one of the first operating mode and the second operating mode.
As the aircraft 40 navigates along a ground track 48, a three-dimensional look-ahead envelope 50 that is generated by the look ahead warning generator 12 (
Still referring to
Referring now to
While various embodiments of the invention have been illustrated and described, as noted above, many changes can be made without departing from the spirit and scope of the invention. Accordingly, the scope of the invention is not limited by the disclosure of the various embodiments. Instead, the invention should be determined entirely by reference to the claims that follow.
Claims
1. A ground proximity warning system for a vehicle, comprising:
- a processor that is configured to generate a look-ahead envelope that defines a region extending outwardly from the vehicle and to generate a terrain proximity message when the defined region intersects a terrain feature; and
- an interface device coupled to the processor that is arranged to receive at least one of a first selection and a second selection from a crew member of the vehicle, arranged to cause the processor to configure the system in a first operating mode wherein the generated terrain proximity message is selectively suppressed in response to the first selection, and arranged to cause the processor to configure the system in a second operating mode wherein the terrain proximity message is not suppressed in response to the second selection.
2. The ground proximity warning system of claim 1, wherein the processor is configured to generate a look-ahead envelope having a terrain warning portion defining a first region adjacent to the vehicle, and configured to generate a terrain advisory portion defining a second region that extends outwardly from the first region, and wherein the first operating mode of the system suppresses the terrain proximity message when the second region intersects a terrain feature.
3. The ground proximity warning system of claim 1, wherein the first operating mode of the system suppresses the generation of at least one of a visual terrain proximity message and an audible terrain proximity message.
4. The ground proximity warning system of claim 1, wherein the processor is configured to generate an alternative flight path that avoids the terrain feature and that is different from a current flight path of the vehicle, and further wherein the first operating mode suppresses the generated terrain proximity message when at least one alternative flight path is generated.
5. The ground proximity warning system of claim 2, wherein the first operating mode of the system suppresses the terrain proximity message when the second region intersects a terrain feature, and presents the terrain proximity message when the first region intersects the terrain feature.
6. A system for selectively altering a ground proximity message for an aircraft, comprising:
- a look-ahead warning generator coupled to at least one sensor device and configured to generate selected performance and positional information for the aircraft and also coupled to a memory device that includes terrain features, the generator being arranged to generate at least one envelope that defines a region extending outwardly from the aircraft and to generate a terrain proximity message when the defined region intersects a terrain feature; and
- an interface device coupled to the generator, arranged to receive at least one of a first selection and a second selection from a crew member of the aircraft, and arranged to cause the generator to configure the system in a first operating mode wherein the generated terrain proximity message is selectively suppressed in response to the first selection, and a second operating mode wherein the terrain proximity message is not suppressed in response to the second selection.
7. The system of claim 6, wherein the at least one sensor device includes one of a position sensor, an altitude sensor, an airspeed sensor, a track sensor and a heading sensor.
8. The system of claim 6, wherein the look-ahead warning generator is further coupled to at least one of a display device arranged to visually display the terrain proximity message, and an aural warning generator arranged to audibly present the terrain proximity message.
9. The system of claim 6, wherein the look-ahead generator is configured to generate a look-ahead envelope having a terrain warning portion defining a first region adjacent to the aircraft, and a terrain advisory portion defining a second region that extends outwardly from the first region, and wherein the first operating mode of the system suppresses the terrain proximity message when the second region intersects a terrain feature.
10. The system of claim 8, wherein the first operating mode of the system suppresses the presentation of the terrain proximity message on at least one of the display device and the aural warning generator.
11. The system of claim 6, wherein the generator is configured to generate an alternative flight path that avoids the terrain feature and that is different from a current flight path of the aircraft, and further wherein the first operating mode suppresses the generated terrain proximity message when at least one alternative flight path is generated.
12. The system of claim 9, wherein first operating mode suppresses the terrain proximity message when the second region intersects a terrain feature, and presents the terrain proximity message when the first region intersects the terrain feature.
13.-20. (canceled)
21. The ground proximity warning system of claim 4, wherein the processor is configured to end suppression of the terrain proximity message in response to determining that no alternative flight path is available.
22. The ground proximity warning system of claim 1, wherein the processor configures the system in the first operating mode wherein a visual terrain proximity message is selectively suppressed and an audible terrain proximity message is enabled in response to the first selection, and wherein the interface device is arranged to receive a third selection from the crew member, and arranged to cause the processor to configure the system in a third operating mode wherein the audible terrain proximity message is selectively suppressed and the visual terrain proximity message is enabled in response to the third selection.
23. The ground proximity warning system of claim 1, wherein the interface device is a speech recognition device arranged to receive a first verbal command from the crew member corresponding to the first selection and arranged to receive a second verbal command from the crew member corresponding to the second selection.
24. The system of claim 11, wherein the generator is configured to end suppression of the terrain proximity message in response to determining that no alternative flight path is available.
25. The system of claim 6, wherein the generator configures the system in the first operating mode wherein a visual terrain proximity message is selectively suppressed and an audible terrain proximity message is enabled in response to the first selection, and wherein the interface device is arranged to receive a third selection from the crew member, and arranged to cause the generator to configure the system in a third operating mode wherein the audible terrain proximity message is selectively suppressed and the visual terrain proximity message is enabled in response to the third selection.
26. The system of claim 6, wherein the interface device is a speech recognition device arranged to receive a first verbal command from the crew member corresponding to the first selection and arranged to receive a second verbal command from the crew member corresponding to the second selection.
Type: Application
Filed: Mar 6, 2006
Publication Date: Feb 3, 2011
Applicant: Honeywell International, Inc. (Morristown, NJ)
Inventors: Yasuo Ishihara (Kirkland, WA), Steve C. Johnson (Issaquah, WA)
Application Number: 11/368,973
International Classification: G01C 5/00 (20060101);