Nova Patents
IL305108A

Terrain database carving around runways

Abstract

This record has no abstract on file.

IL305108A, drawing sheet 1
Sheet 1 of 5

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

22 claims: 3 independent, 19 dependent

  1. 1
    What is claimed is:1. A method of adjusting terrain elevation data for a terrain avoidance and warning system onboard an aircraft, the method comprising: acquiring landing runway data for an aircraft runway, the landing runway data comprising longitude, latitude, and elevation values for base end vertices and reciprocal end vertices of the aircraft runway;computing, based on the acquired landing runway data, longitude, latitude, and elevation values for approach ramp vertex points that define a base end ramp plane, a reciprocal end ramp plane, and a runway plane;processing a query location for the aircraft, the query location associated with a predicted future trajectory of the aircraft;computing a terrain elevation value for the query location, based on the longitude, latitude, and elevation values for the approach ramp vertex points;supplying the computed terrain elevation value to the terrain avoidance and warning system;and operating the terrain avoidance and warning system with the computed terrain elevation value to check if the future trajectory will intercept with terrain.
  2. 9
    A system for adjusting terrain elevation data for an aircraft, the system comprising:a terrain avoidance and warning system onboard the aircraft;a data source comprising stored terrain data that includes stored terrain elevation values, wherein the stored terrain elevation values are loadable into computer memory onboard the aircraft to form a local terrain map comprising local terrain elevation values;and at least one processor programmed to: acquire landing runway data for an aircraft runway, the landing runway data comprising longitude, latitude, and elevation values for base end vertices and reciprocal end vertices of the aircraft runway;compute, based on the acquired landing runway data, longitude, latitude, and elevation values for approach ramp vertex points that define a base end ramp plane, a reciprocal end ramp plane, and a runway plane;process a query location for the aircraft, the query location associated with a predicted future trajectory of the aircraft;compute a terrain elevation value for the query location, based on the longitude, latitude, and elevation values for the approach ramp vertex points;supply the computed terrain elevation value to the terrain avoidance and warning system;and operate the terrain avoidance and warning system with the computed terrain elevation value, instead of local terrain elevation values, to predict the future trajectory of the aircraft and to check if the future trajectory will intercept with terrain.
  3. 18
    A method of adjusting terrain elevation data for a terrain avoidance and warning system onboard an aircraft, the method comprising:acquiring landing runway data for an aircraft runway, the landing runway data comprising longitude, latitude, and elevation values for base end vertices and reciprocal end vertices of the aircraft runway;computing, based on the acquired landing runway data, longitude, latitude, and elevation values for approach ramp vertex points that define a base end ramp plane, a reciprocal end ramp plane, and a runway plane;processing a query location for the aircraft, the query location associated with a predicted future trajectory of the aircraft;obtaining a local terrain elevation value for the query location, from a local terrain map that is loaded in computer memory onboard the aircraft;computing a terrain elevation value for the query location, based on the longitude, latitude, and elevation values for the approach ramp vertex points;supplying, to the terrain avoidance and warning system, a minimum value of the local terrain elevation value and the computed terrain elevation value;and operating the terrain avoidance and warning system with the supplied minimum value to check if the future trajectory will intercept with terrain.