Processing Machinery Protection and Fault Prediction Data Natively in a Distributed Control System
US-2016026173-A1 · Jan 28, 2016 · US
US2017283084A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017283084-A1 |
| Application number | US-201615083438-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 29, 2016 |
| Priority date | Mar 29, 2016 |
| Publication date | Oct 5, 2017 |
| Grant date | — |
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A sensor system and method includes first and second sensing elements, a digital sensors, a host computer and a digital bus. The first sensing element is configured to collect first sensor data and the second sensing element is configured to collect second sensor data. The digital sensor includes a controller that is configured to receive the first and second sensor data and process the first sensor data together with the second sensor data to generate processed data. The host computer is configured to receive the processed data from the digital sensor over the digital bus.
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1 . A method of processing sensor data, the method comprising: obtaining, using a first sensing element, first sensor data; obtaining, using a second sensing element, second sensor data; obtaining, by a first digital sensor, the first sensor data; obtaining, by the first digital sensor via a digital bus, received sensor data corresponding to the second sensor data; processing, by a controller of the first digital sensor, the first sensor data and the received sensor data to generate processed data; and providing the processed data to a host computer. 2 . The method of claim 1 , wherein the first sensing element is connected to the first digital sensor and the second sensing element is an analog sensor, and wherein obtaining, using the second sensing element, the second sensor data comprises: obtaining, using the analog sensor, analog data; providing the analog data to the host computer; and converting, using the host computer, the analog data into digital sensor data. 3 . The method of claim 2 , further comprising: compressing, using the host computer, the digital sensor data into compressed data; and providing the compressed data as the received sensor data to the first digital sensor via the digital bus. 4 . The method of claim 3 , wherein the analog sensor is a tachometer, and wherein the first digital sensor is an accelerometer. 5 . The method of claim 1 , wherein the first sensing element is connected to the first digital sensor and the second sensing element is connected to a second digital sensor, and wherein obtaining, using the second sensing element, the second sensor data comprises obtaining, using the second digital sensor, digital sensor data. 6 . The method of claim 5 , further comprising: compressing the digital sensor data into compressed data; and providing the compressed data to the first digital sensor as the received sensor data. 7 . The method of claim 6 , wherein processing, by the controller of the first digital sensor, the first sensor data and the received sensor data to generate the processed data comprises: processing, by a controller of the first digital sensor, the first sensor data and the compressed data to generate the processed data. 8 . The method of claim 6 , wherein compressing the digital sensor data comprises: providing, by the second digital sensor, the digital sensor data to the host; and compressing, by the host, the second digital sensor data into the compressed data. 9 . The method of claim 6 , wherein compressing the digital sensor data comprises: compressing, by the second digital sensor, the digital sensor data into the compressed data. 10 . A sensor system comprising: a first sensing element configured to collect first sensor data; a second sensing element configured to collect second sensor data; a host computer; a first digital bus; and a first digital sensor comprising a controller configured to obtain the first sensor data and received sensor data via the first digital bus, wherein the received sensor data corresponds to the second sensor data, and wherein the controller is configured to process the first sensor data and the received sensor data to generate processed data, and wherein the first digital sensor is configured to provide the processed data to the host computer via the first digital bus. 11 . The sensor system of claim 10 , wherein the first sensing element is connected to provide the first sensor data to the first digital sensor, and wherein the second sensing element is an analog sensor. 12 . The sensor system of claim 11 , wherein the analog sensor is connected to provide analog sensor data to the host computer, and wherein the host computer is configured to compress the analog sensor data into compressed data and provide the compressed data to the first digital sensor as the received sensor data. 13 . The sensor system of claim 10 , wherein the first sensing element is connected to provide the first sensor data to the first digital sensor, and wherein the second sensing element is connected to provide the second sensor data to a second digital sensor. 14 . The sensor system of claim 13 , wherein the second digital sensor is connected to provide the second sensor data to the host computer, and wherein the host computer is configured to compress the second sensor data into compressed data and provide the compressed data to the first digital sensor as the received sensor data. 15 . The sensor system of claim 13 , wherein the second digital sensor is configured to compress the second sensor data into compressed data and provide the compressed data to the first digital sensor as the received sensor data. 16 . The sensor system of claim 15 , wherein the second digital sensor is connected to provide the compressed data to the first digital sensor via the first digital bus. 17 . The sensor system of claim 15 , further comprising a second digital bus, wherein the second digital sensor is configured to provide the compressed data to the host computer via the second digital bus, and wherein the host computer is configured to provide the compressed data to the first digital sensor via the first digital bus. 18 . The sensor system of claim 10 , wherein the sensor system is an aircraft sensor system, and wherein the second sensing element is a tachometer configured to output revolution data of rotating machinery, and wherein the first sensing element is an accelerometer configured to output acceleration data. 19 . The sensor system of claim 18 , wherein the controller of the first digital sensor is a field-programmable gate array (FPGA) and wherein the processed data is a time synchronous average (TSA) for the rotating machinery.
Analysing tachograph charts (arrangements for graph-reading in general G06K11/00) · CPC title
for measuring angular speed (G01P3/56 takes precedence) · CPC title
Aircraft indicators or protectors not otherwise provided for · CPC title
for measuring angular accelerations · CPC title
Analogue/digital converters ({H03M1/001 – } H03M1/10 take precedence) · CPC title
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