APPARATUS, METHOD AND SYSTEM FOR PROVIDING USER DEFINED CONSTRAINTS FOR AIRCRAFT ROUTE PLANNING
An advisory module may include processing circuitry configured to receive route planning information related to route optimization for travel of an aircraft between a starting location and a destination, generate a flight path associated with the route optimization, receive a user defined constraint via a user interface, and generate an updated flight path based on the user defined constraint.
1 . A method comprising:
receiving route planning information related to route optimization for travel of an aircraft between a starting location and a destination;
generating a flight path associated with the route optimization;
receiving a user defined constraint via a user interface; and
generating an updated flight path based on the user defined constraint.
2 . The method of claim 1 , wherein the user defined constraint is a multi-dimensional object inserted by the user into a route tracking or optimization system configured to execute the method.
3 . The method of claim 2 , wherein the multi-dimensional object is defined as a three-dimensional geometric shape having a start and end time.
4 . The method of claim 3 , wherein the three-dimensional geometric shape includes a minimum altitude, a maximum altitude, and boundaries in latitude and longitudinal coordinates on sides of the multi-dimensional object.
5 . The method of claim 3 , wherein the multi-dimensional object further comprises a moving direction and a corresponding moving speed.
6 . The method of claim 3 , wherein the three-dimensional geometric shape is defined using GeoJSON format.
7 . The method of claim 1 , wherein the user defined constraint is an exclusionary user defined constraint indicating a region to be avoided during the route optimization.
8 . The method of claim 1 , wherein user defined constraint is an inclusionary user defined constraint indicating a region inside which the aircraft is to stay during the route optimization.
9 . The method of claim 8 , wherein the inclusionary user defined constraint is determined based on wireless connectivity from an air-to-ground network to the aircraft while the aircraft is inside the region.
10 . The method of claim 1 , wherein the user defined constraint includes both an exclusionary user defined constraint indicating a region to be avoided during the route optimization and an inclusionary user defined constraint indicating a region inside which the aircraft is to stay during the route optimization.
11 . A trajectory management module comprising processing circuitry configured to:
receive route planning information related to route optimization for travel of an aircraft between a starting location and a destination;
generate a flight path associated with the route optimization;
receive a user defined constraint via a user interface; and
generate an updated flight path based on the user defined constraint.
12 . The trajectory management module of claim 11 , wherein the user defined constraint is a multi-dimensional object inserted by the user into a route tracking or optimization system configured to execute the method.
13 . The trajectory management module of claim 12 , wherein the multi-dimensional object is defined as a three dimensional geometric shape having a start and end time.
14 . The trajectory management module of claim 13 , wherein the three dimensional geometric shape includes a minimum altitude, a maximum altitude, and boundaries in latitude and longitudinal coordinates on sides of the multi-dimensional object.
15 . The trajectory management module of claim 13 , wherein the multi-dimensional object further comprises a moving direction and a corresponding moving speed.
16 . The trajectory management module of claim 13 , wherein the three-dimensional geometric shape is defined using GeoJSON format.
17 . The trajectory management module of claim 11 , wherein the user defined constraint is an exclusionary user defined constraint indicating a region to be avoided during the route optimization.
18 . The trajectory management module of claim 11 , wherein user defined constraint is an inclusionary user defined constraint indicating a region inside which the aircraft is to stay during the route optimization.
19 . The trajectory management module of claim 18 , wherein the inclusionary user defined constraint is determined based on wireless connectivity from an air-to-ground network to the aircraft while the aircraft is inside the region.
20 . The trajectory management module of claim 11 , wherein the user defined constraint includes both an exclusionary user defined constraint indicating a region to be avoided during the route optimization and an inclusionary user defined constraint indicating a region inside which the aircraft is to stay during the route optimization.