CONFIGURABLE NON-DESTRUCTIVE TESTING DEVICE
A method includes receiving, by a data processor of a non-destructive testing (NDT) device, data characterizing an inspection point identifying an asset to be inspected using the NDT device. The method also includes determining, by the data processor, an inspection procedure associated with the asset based on the inspection point included in the received data. In addition, the method includes determining, by the data processor, a user interface configuration of the NDT device, the user interface configuration including a graphical interface configuration provided via a graphical user interface displayed on a display of the NDT device and a manual interface configuration corresponding to an actuated interface device of the NDT device. The method further includes configuring, by the data processor, the NDT device to perform the inspection procedure by applying the determined user interface configuration.
1 . A method comprising:
receiving, by a data processor of a non-destructive testing (NDT) device, data characterizing an inspection point identifying an asset to be inspected using the NDT device;
determining, by the data processor, an inspection procedure associated with the asset based on the inspection point included in the received data;
determining, by the data processor, a user interface configuration of the NDT device, the user interface configuration including a graphical interface configuration provided via a graphical user interface displayed on a display of the NDT device and a manual interface configuration corresponding to an actuated interface device of the NDT device; and
configuring, by the data processor, the NDT device to perform the inspection procedure by applying the determined user interface configuration.
2 . The method of claim 1 , wherein the graphical interface configuration includes a graphical prompt to be displayed via the graphical user interface, the graphical prompt corresponding to a first inspection task included in the inspection procedure.
3 . The method of claim 1 , wherein the manual interface configuration includes an actuation input pattern to be received via the actuated interface device, the actuation input pattern corresponding to a second inspection task included in the inspection procedure.
4 . The method of claim 3 , wherein responsive to receiving the actuation input pattern, controlling, by the NDT device, an actuator associated with an image sensor used to perform the inspection procedure.
5 . The method of claim 1 , wherein the received data is received via an inspection point selection provided via the graphical user interface, the inspection point selection including previously performed inspection procedures associated with the inspection point.
6 . The method of claim 1 , wherein the received data is received via the image sensor of the NDT device and includes an image of the inspection point.
7 . The method of claim 6 , wherein the received data includes image data of the inspection point captured by the image sensor.
8 . The method of claim 1 , wherein the actuated interface device includes at least one of a button, slider, joystick, knob, pointing stick, and touchpad.
9 . The method of claim 1 , wherein the NDT device includes a borescope or a video probe.
10 . The method of claim 1 , wherein the asset includes at least one of a compressor, a turbine, an engine, or a combustor.
11 . A non-destructive testing (NDT) device comprising:
a sensor;
an actuated interface device;
a data processor communicatively coupled to the sensor and the actuated interface device;
a display coupled to the data processor;
a memory coupled to the data processor and storing computer-readable executable instructions, which when executed by the data processor perform operations comprising
receive data characterizing an inspection point identifying an asset to be inspected using the NDT device;
determine an inspection procedure associated with the asset based on the inspection point included in the received data;
determine a user interface configuration of the NDT device, the user interface configuration including a graphical interface configuration provided via a graphical user interface displayed on the display and a manual interface configuration corresponding to the actuated interface device; and
configure the NDT device to perform the inspection procedure by applying the determined user interface configuration.
12 . The NDT device of claim 11 , wherein the graphical interface configuration includes a graphical prompt to be displayed via the graphical user interface, the graphical prompt corresponding to a first inspection task included in the inspection procedure.
13 . The NDT device of claim 11 , wherein the manual interface configuration includes an actuation input pattern to be received via the actuated interface device, the actuation input pattern corresponding to a second inspection task included in the inspection procedure.
14 . The NDT device of claim 13 , wherein the NDT device controls an actuator associated with the sensor used to perform the inspection procedure, responsive to receiving the actuation input pattern.
15 . The NDT device of claim 11 , wherein the received data is received via an inspection point selection provided via the graphical user interface, the inspection point selection including previously performed inspection procedures associated with the inspection point.
16 . The NDT device of claim 11 , wherein the received data is received via an image sensor of the NDT device and includes an image of the inspection point.
17 . The NDT device of claim 16 , wherein the received data includes image data of the inspection point captured by the image sensor.
18 . The NDT device of claim 11 , wherein the actuated interface device includes at least one of a button, slider, joystick, knob, pointing stick, and touchpad.
19 . The NDT device of claim 11 , wherein the NDT device includes a borescope or a video probe.
20 . A non-transitory computer readable medium having instructions stored therein that, when executed by a microprocessor, causes the microprocessor to perform a method, the method comprising:
receiving, by a data processor of a non-destructive testing (NDT) device, data characterizing an inspection point identifying an asset to be inspected using the NDT device;
determining, by the data processor, an inspection procedure associated with the asset based on the inspection point included in the received data;
determining, by the data processor, a user interface configuration of the NDT device, the user interface configuration including a graphical interface configuration provided via a graphical user interface displayed on a display of the NDT device and a manual interface configuration corresponding to an actuated interface device of the NDT device; and
configuring, by the data processor, the NDT device to perform the inspection procedure by applying the determined user interface configuration.