Automatic data acquisition subsystem synchronization and sample rate arbitration
US-9423822-B1 · Aug 23, 2016 · US
US10169928B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10169928-B2 |
| Application number | US-201514963422-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 9, 2015 |
| Priority date | Dec 9, 2015 |
| Publication date | Jan 1, 2019 |
| Grant date | Jan 1, 2019 |
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Apparatus for providing real-time data to a hardware-in-the-loop simulator for an automotive vehicle. The apparatus includes a test vehicle having at least one sensor which generates an output signal representative of a condition of the vehicle. A wireless transmitter such as a cellular phone on the motor vehicle receives the sensor output signal as an input signal and transmits that output signal to a computer network. A simulator data server receives the data from the computer network and provides that data to the hardware-in-the-loop simulator.
Opening claim text (preview).
We claim: 1. An apparatus for providing real-time data for testing a circuit for an automotive vehicle system, the apparatus comprising: a test vehicle having at least one sensor which generates a sensor output signal representative of a condition of the vehicle; a wireless transmitter contained on the test vehicle which receives the sensor output signal and transmits the sensor output signal to a computer network as sensor data from the test vehicle; a simulator data server which receives, from the computer network, the sensor data from the test vehicle; and a hardware-in-the-loop simulator comprising at least one circuit under test and a hardware-in-the-loop interface associated with the circuit under test, the hardware-in-the-loop interface comprising a processor that receives, from the simulator data server, the sensor data from the test vehicle, the hardware-in-the-loop interface further comprising a test interface that enables the processor to communicate with the circuit under test, wherein the processor is programmed to execute a simulation model of the automotive vehicle system using the sensor data from the test vehicle and circuit data received from the circuit under test, and provide simulation results to the circuit under test via the test interface to enable the circuit under test to process the simulation results to provide new circuit data to the processor via the test interface. 2. The apparatus as defined in claim 1 wherein the computer network comprises the Internet. 3. The apparatus as defined in claim 1 wherein the wireless transmitter comprises a cellular transmitter. 4. The apparatus as defined in claim 2 wherein the simulator data server communicates to the hardware-in-the-loop simulator through a local area network. 5. The apparatus as defined in claim 1 wherein the simulator data server comprises a data cache that stores the sensor data from the test vehicle. 6. The apparatus as defined in claim 4 wherein the simulator data server comprises a first network interface which connects to the Internet and a second network interface which connects to the local area network. 7. The apparatus as defined in claim 6 wherein the simulator data server comprises a processor programmed to convert the sensor data from the test vehicle received from the Internet into an input format used by the hardware-in-the-loop simulator. 8. The apparatus as defined in claim 1 wherein the hardware-in-the-loop simulator comprises a plurality of the electronic circuits under test and a respective hardware-in-the-loop interface associated with each electronic circuit under test the respective hardware-in-the-loop interface providing communication between the local area network and a respective electronic circuit under test to receive the sensor data from the test vehicle corresponding to the respective electronic circuit under test. 9. A method for providing real-time data for testing a circuit for an automotive vehicle system, the method comprising: placing at least one sensor on a test vehicle which generates a sensor output signal representative of a condition of the vehicle; wirelessly transmitting the sensor output signal by a wireless transmitter to a computer network as sensor data from the test vehicle; receiving, by a server, from the computer network, the sensor data from the test vehicle; providing the sensor data from the test vehicle to a processor of a hardware-in-the-loop interface of a hardware-in-the-loop simulator; executing, by the processor, a simulation model of the automotive vehicle system using the sensor data from the test vehicle and circuit data received from the circuit under test; sending, by the processor, simulation results to the circuit under test via a test interface of the hardware-in-the-loop interface; and processing, by the circuit under test, the simulation results to provide new circuit data to the processor via the test interface. 10. The method as defined in claim 9 wherein the computer network comprises the Internet. 11. The method as defined in claim 9 wherein the wireless transmitter comprises a cellular transmitter. 12. The method as defined in claim 10 wherein the server communicates to the hardware-in-the-loop simulator through a local area network. 13. The method as defined in claim 12 wherein the server comprises a data cache that stores the sensor data from the test vehicle. 14. The method as defined in claim 12 wherein the server comprises a first network interface which connects to the Internet and a second network interface which connects to the local area network. 15. The method as defined in claim 14 wherein the server comprises a processor programmed to convert the sensor data from the test vehicle received from the Internet into an input format used by the hardware-in-the-loop simulator. 16. The method as defined in claim 12 wherein the hardware-in-the-loop simulator comprises a plurality of the electronic circuits under test and a respective hardware-in-the-loop interface associated with each electronic circuit under test, each hardware-in-the-loop interface providing communication between the local area network and a respective electronic circuit under test to receive the sensor data from the test vehicle corresponding to the respective electronic circuit under test.
communicating information to a remotely located station (transmission systems for measured values G08C) · CPC title
Registering or indicating driving, working, idle, or waiting time only (apparatus forming part of taximeters G07B13/00) · CPC title
Vehicle, aircraft or watercraft design · CPC title
Diagnosing performance data (testing of vehicles G01M17/00; testing of electrical installation on vehicles G01R31/005) · CPC title
Design optimisation, verification or simulation (optimisation, verification or simulation of circuit designs G06F30/30) · CPC title
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