Abstract:
Systems and methods for communicating data from off-vehicle data sources to a vehicle are provided. In one embodiment, a method for obtaining data for a vehicle comprises: initiating an information request from on-board a vehicle; formatting the information request onboard the vehicle into a data file format to generate a request file; performing a wireless file transfer of the request file from the vehicle to a data center, wherein the request file is transferred to a file system location; polling the file system location for creation of a response file corresponding to the request file; when the response file is detected within the file system location, retrieving the response file from the data center to the vehicle; and displaying at the vehicle information responsive to the information request from the response file. In some embodiments, the file system location is a file system location uniquely associated with the vehicle.
Abstract:
A system and method are provided for displaying visual flight reference points and their associated flight data. This is achieved by coupling a processor to a display system and configured the processor to generate symbology graphically representative of the VRPs and their associated flight data. The display system then renders the VRP symbology and the flight data symbology proximate to the VRP symbology. In addition, the processor is configured to alter the symbology of the VRPs depending on the estimates elapsed time for each of the VRPs to become visible to the aircraft.
Abstract:
A system, vehicle and method for enhanced vehicle operator connectivity to external networks and onboard systems via a single access point are disclosed. For example, a method for enhanced vehicle operator connectivity is disclosed. The method includes communicating with the Internet through a communications access point onboard a vehicle, communicating with a server external to the vehicle through the communications access point and the Internet, and communicating with an electronics system onboard the vehicle through the communications access point, the Internet and the server.
Abstract:
Systems and methods are disclosed for exchanging real-time data between vehicle systems by receiving, at a first source system, a request for data from a requestor and, based on determining that the first source system does not have all requested data, querying an operations center for missing data. Then, based on determining that the operations center does not have all missing data, the operations center is queried for a list comprising candidate source systems. Upon identifying a next source system from the list, the next source system is queried for missing data, and the next source system is removed from the list. Based on whether the next source system has all missing data, either all missing data is transmitted to the requestor, or, the process of finding and querying for the missing data is iteratively performed until all missing data is received or the list is empty.
Abstract:
An apparatus and method for receiving and processing weather data and flight plan data is disclosed. The apparatus includes a first display, an input unit, and a processor. The processor is configured to receive flight plan data and weather data, and to determine, based on the weather data, which weather characteristics is located within a predetermined range of a predetermined flight altitude value. The processor is further configured to instruct the first display to display those weather data which are located within the predetermined range above and below the input flight altitude value together with the flight plan data, and to instruct the first display to additionally display at least one element of the group consisting of the elements: strategic information weather, uplink weather, weather information from external weather data provider, onboard weather radar information, notice to airmen, aeronautical information service data, terminal area forecast, air-traffic related information.
Abstract:
An apparatus and method for receiving and processing weather data and flight plan data is disclosed. The apparatus includes a first display, an input unit, and a processor. The processor is configured to receive flight plan data and weather data, and to determine, based on the weather data, which weather characteristics is located within a predetermined range of a predetermined flight altitude value. The processor is further configured to instruct the first display to display those weather data which are located within the predetermined range above and below the input flight altitude value together with the flight plan data, and to instruct the first display to additionally display at least one element of the group consisting of the elements: strategic information weather, uplink weather, weather information from external weather data provider, onboard weather radar information, notice to airmen, aeronautical information service data, terminal area forecast, air-traffic related information.
Abstract:
A system and method are provided for displaying visual flight reference points and their associated flight data. This is achieved by coupling a processor to a display system and configured the processor to generate symbology graphically representative of the VRPs and their associated flight data. The display system then renders the VRP symbology and the flight data symbology proximate to the VRP symbology. In addition, the processor is configured to alter the symbology of the VRPs depending on the estimates elapsed time for each of the VRPs to become visible to the aircraft.