Abstract:
A system may include a non-avionics computing device, a data network switch, and avionics computing devices. The non-avionics computing device may be configured to execute a situation awareness program. Each of the avionics computing devices may be communicatively coupled to the data network switch. The avionics computing devices may include a first avionics computing device communicatively coupled to the non-avionics computing device. The first avionics computing device may be configured to: receive avionics data from other of the avionics computing devices; filter the avionics data from the other of the avionics computing devices based on a predetermined relevance to the situation awareness program; and output the filtered avionics data to the non-avionics computing device.
Abstract:
Systems and methods for navigating an aircraft display with a mobile device are disclosed. In embodiments, a system includes an aircraft display and a controller in communication with the aircraft display and a mobile device. The controller is configured to generate a graphical user interface at the aircraft display and mirror the graphical user interface at the mobile device. The controller is further configured to receive a user input via the mobile device and configured to update the graphical user interface at the aircraft display and the mobile device based upon the user input.
Abstract:
A system may include a display, an avionics server, and an automatic dependent surveillance-broadcast (ADS-B) receiver implemented in an aircraft. The avionics server may include a processor configured to host applications. The ADS-B receiver may be configured to receive ADS-B In data associated with traffic information from other aircraft in a vicinity of the aircraft. Execution of the applications may be configured to cause the processor to: generate geo-referenced aeronautical chart graphics data; output the geo-referenced aeronautical chart graphics data to the display; receive the ADS-B In data from the ADS-B receiver; generate geo-referenced traffic graphics data based on the received ADS-B In data; and output the geo-referenced traffic graphics data to the display. The display may be configured to receive the geo-referenced aeronautical chart graphics data and the geo-referenced traffic graphics data and display an image of a selected aeronautical chart overlaid with the traffic information.
Abstract:
A touch screen controller identifies a multi-touch gesture associated with a display feature such as scale or orientation. The touch screen controller applies a discrete value change to the display feature from an ordered set of discrete values. The number of points of contact in the multi-touch gesture may be interpreted by the touch screen controller as step changes in the ordered set of discrete values when applying the value change to the display feature.
Abstract:
A system, device, and method for generating and presenting navigation chart information are disclosed. The navigation chart information presenting system may include a display system comprised of one or more display units receiving image data set representative of an image of navigation chart information from an image generator (IG). The IG may be configured to acquire navigation chart data and generate the image data set as a function of the navigation chart data. The navigation chart data could be representative of a plurality of sections shown in a first visual format of a navigation chart, where each section of the plurality of sections is comprised of a plurality of feature names and feature information associated with one of the plurality of feature names. The image data set could be representative of a plurality of page images comprised of at least a portion of the navigation chart information.
Abstract:
A system and methods for generating one or more flight management strips presentable to a viewer on a display unit are disclosed. The flight management strip generating system may include a flight management system (FMS) and an event generator (EG). The EG may be configured to receive flight management data and generate event data representative of a flight management strip(s). In some embodiments, each flight management strip may be informative of FMS event(s) and comprised of a first row, a plurality of second rows, and one or more third rows. In some embodiments, a first flight management strip or at least one second management strip is informative of one FMS event and comprised of a plurality of rows. First rows may be reserved for a display of time(s), second rows for the display of FMS event(s), and third rows for the display of an FMS mode.
Abstract:
A system, device, and method for generating and presenting an aircraft attitude indicator are disclosed. The attitude indicator presenting system may include a presentation system comprised of one or more display units receiving image data from an image generator (IG). The IG may be configured to acquire navigation data and generate the image data as a function of the navigation data. The navigation data could include data representative of aircraft roll and/or pitch attitude, and the image data could be representative of at least of an image of the attitude indicator comprised of a sky area and a ground area. The ground area may be visually presented by either a first texture or a second texture depending on whether a trigger attitude has been met or exceeded.