Method and assembly for monitoring the integrity of free inertial position and velocity measurements of an aircraft
Disclosed is a method for monitoring the integrity of an inertial measurement assembly of an aircraft, the measurement assembly comprising at least one high-grade measurement unit; and at least two low-grade measurement units; each of the measurement units comprises a sensor unit and a processing unit coupled to the respective sensor unit, the respective sensor units measure accelerations and angular rates of the aircraft and provide raw data based on said measurements; the respective processing units provide processed data reflecting the velocity and/or attitude of the aircraft; the method comprising: receiving raw data output by the sensor units and evaluating according to at least one predetermined criterion whether the raw data of each sensor unit are consistent with one another; and receiving the processed data output by the processing units and evaluating whether the processed data of each processing unit are consistent with one another.
1 . A method for monitoring the integrity of an inertial measurement assembly of an aircraft,
the measurement assembly comprising:
a single high-grade measurement unit; and
at least two low-grade measurement units;
wherein the single high-grade measurement unit is of an inertial navigation system (INS) type and the at least two low-grade measurement units are of an attitude heading reference system (AHRS) type,
wherein each of the measurement units comprises a sensor unit and a processing unit operatively coupled to the respective sensor unit,
wherein the respective sensor units measure accelerations and angular rates of the aircraft and provide raw data based on said measurements;
wherein the respective processing units process the raw data provided by the sensor units and provide processed data reflecting the velocity and/or attitude of the aircraft; the method comprising:
at a sensor monitoring unit, receiving the raw data output by each of the sensor units and evaluating according to at least one predetermined criterion whether the raw data of each sensor unit are consistent with one another; and
at an attitude monitoring unit, receiving the processed data output by each of the processing units and evaluating according to at least one predetermined criterion whether the processed data of each processing unit are consistent with one another.
2 . The method according to claim 1 ,
further comprising, in the case that at least one of the sensor monitoring unit and the attitude monitoring unit evaluates that the respective data are inconsistent with one another, issuing a warning to a pilot of the aircraft and/or modifying an operational mode of the aircraft.
3 . The method according to claim 1 ,
further comprising, in the case that at least one of the sensor monitoring unit and the attitude monitoring unit evaluates that the respective data are inconsistent with one another, identifying an error location.
4 . The method according to claim 1 , wherein the attitude monitoring unit is operatively coupled to the sensor monitoring unit and therefrom receives data on the outcome of the evaluating whether the raw data of each sensor units are consistent with one another.
5 . The method according to claim 1 , wherein evaluating of the raw data and/or the processed data is performed at a frequency which is lower than an operational frequency of a flight control unit of the aircraft and/or at a frequency in the order of 0.1 to 10 Hz.
6 . An inertial measurement assembly of an aircraft with integrated integrity monitoring, comprising:
a single high-grade measurement unit; and
at least two low-grade measurement units;
wherein the single high-grade measurement unit is of a inertial navigation system (INS) type and the at least two low-grade measurement units are of an attitude heading reference system (AHRS) type,
wherein each of the measurement units comprises a sensor unit and a processing unit operatively coupled to the respective sensor unit,
wherein the respective sensor units are configured to measure accelerations and angular rates of the aircraft and provide raw data based on said measurement;
wherein the respective processing units are configured to process the raw data provided by the sensor units and provide processed data reflecting the velocity and/or attitude of the aircraft;
the assembly further comprising:
a sensor monitoring unit configured to receive the raw data output by each of the sensor units and evaluate according to at least one predetermined criterion whether the raw data of each sensor units are consistent with one another;
an attitude monitoring unit configured to receive the processed data output by each of the processing units and evaluate according to at least one predetermined criterion whether the processed data of each processing unit are consistent with one another.
7 . The assembly according to claim 6 , wherein the sensor units comprise at least one angular rate sensor and at least one acceleration sensor, in particular a gyroscope, an accelerometer, a fibre optical device and a MEMS device, etc.
8 . The assembly according to claim 6 ,
wherein the sensor monitoring unit and the attitude monitoring unit are implemented in a single device.
9 . The assembly according to claim 6 ,
further comprising at least one GNSS receiver.
10 . The assembly according to claim 6 ,
wherein the at least two low-grade measurement units are more compact than the single high-grade measurement unit.
11 . An aircraft, comprising an inertial measurement assembly according to claim 6 , and a flight control unit.
12 . The aircraft according to claim 11 ,
wherein at least one of the sensor monitoring unit and the attitude monitoring unit is implemented by the flight control unit.
13 . The assembly according to claim 6 , wherein the sensor monitoring unit is a separate device from the measurement units and is communicably coupled with the measurement units.