Smart IOT controller for gathering and transmitting aircraft health information during flight
Embodiments of the disclosure provide an aircraft health monitoring system having an in-flight controller. The controller is configured to, responsive to a determination that an aircraft is in-flight, access a sensor network system of the aircraft to generate in-flight system health (IFSH) information. A transmission operation is initiated that transmits the IFSH information through a wireless communications path to a ground-based flight monitoring system. The ground-based flight monitoring system is operable to initiate an aircraft management operation associated with the aircraft.
1 . An aircraft health monitoring system comprising an in-flight controller, wherein the in-flight controller is configured to:
responsive to a determination that an aircraft is in-flight, access a sensor network system of the aircraft to generate in-flight system health (IFSH) information; and
initiate a transmission operation that transmits the IFSH information through a wireless communications path to a ground-based flight monitoring system;
wherein the ground-based flight monitoring system is operable to, responsive to the IFSH information, initiate an aircraft management operation associated with the aircraft, the aircraft management operations comprising analyzing, evaluating and acting on the IFSH while the aircraft is in-flight without waiting for the aircraft to land.
2 . The aircraft health monitoring system of claim 1 , wherein the controller is further configured to receive through the wireless communications path an IFSH change request.
3 . The aircraft health monitoring system of claim 2 , wherein the controller is further configured to, responsive to the IFSH change request, change an aspect of the IFSH information that is transmitted through the wireless communications path to the ground-based flight monitoring system.
4 . The aircraft health monitoring system of claim 3 , wherein the change to the aspect of the IFSH information comprises including an additional set of IFSH information with the IFSH information.
5 . The aircraft health monitoring system of claim 3 , wherein the change to the aspect of the IFSH information comprises changing an information sampling rate associated with generating the IFSH information.
6 . The aircraft health monitoring system of claim 1 , wherein the IFSH information comprises pre-processed IFSH information.
7 . The aircraft health monitoring system of claim 6 , wherein the controller is further configured to apply preprocessing operations to at least a portion of the IFSH information to generate the pre-processed IFSH information.
8 . The aircraft health monitoring system of claim 7 , wherein the pre-processing operations are selected from a group consisting of:
condensing the portion of the IFSH information; and
filtering the portion of the IFSH information.
9 . The aircraft health monitoring system of claim 1 , wherein the aircraft management operation comprises using IFSH information in a predictive analysis operation.
10 . The aircraft health monitoring system of claim 9 , wherein a result of the predictive analysis operation is provided to a flight management system associated with the aircraft.
11 . A method of making an in-flight controller of an aircraft health management system, the method comprising:
configuring the in-flight controller to:
responsive to a determination that an aircraft is in-flight, access a sensor network system of the aircraft to generate in-flight system health (IFSH) information; and
initiate a transmission operation that transmits the IFSH information through a wireless communications path to a ground-based flight monitoring system;
wherein the ground-based flight monitoring system is operable to, responsive to the IFSH information, initiate an aircraft management operation associated with the aircraft, the aircraft management operations comprising analyzing, evaluating and acting on the IFSH while the aircraft is in-flight without waiting for the aircraft to land.
12 . The method of claim 11 , wherein the controller is further configured to receive through the wireless communications path an IFSH change request.
13 . The method of claim 12 , wherein the controller is further configured to, responsive to the IFSH change request, change an aspect of the IFSH information that is transmitted through the wireless communications path to the ground-based flight monitoring system.
14 . The method of claim 3 , wherein the change to the aspect of the IFSH information comprises including an additional set of IFSH information with the IFSH information.
15 . The method of claim 13 , wherein the change to the aspect of the IFSH information comprises changing an information sampling rate associated with generating the IFSH information.
16 . The method of claim 11 , wherein the IFSH information comprises pre-processed IFSH information.
17 . The method of claim 16 , wherein the controller is further configured to apply preprocessing operations to at least a portion of the IFSH information to generate the pre-processed IFSH information.
18 . The method of claim 17 , wherein the pre-processing operations are selected from a group consisting of:
condensing the portion of the IFSH information; and
filtering the portion of the IFSH information.
19 . The method of claim 11 , wherein the aircraft management operation comprises using IFSH information in a predictive analysis operation.
20 . The method of claim 19 , wherein a result of the predictive analysis operation is provided to a flight management system associated with the aircraft.