Measuring device and measuring method for testing a location tracking employing real time kinematics
US-2019049591-A1 · Feb 14, 2019 · US
US10484109B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10484109-B2 |
| Application number | US-201815901999-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 22, 2018 |
| Priority date | Feb 22, 2018 |
| Publication date | Nov 19, 2019 |
| Grant date | Nov 19, 2019 |
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The present invention provides a test arrangement and a test method for testing a device under test. The device under test may be tested by means of a test controller. Furthermore, a number of impairment devices are provided for applying impairments on a radio communication link of the device under test. The impairment devices may be controlled by an impairment controller. In this way, it is possible to apply impairments corresponding to impairments of a particular geographical area or a desired route, without moving the device under test to the respective geographical position. Accordingly, impairments of a particular geographical area can be applied without moving the test arrangement to the respective geographical area.
Opening claim text (preview).
The invention claimed is: 1. A test arrangement for testing a device under test, the test arrangement comprising: a test controller comprising a control interface for interacting with the device under test, said test controller being adapted to control the device under test to perform a predetermined test operation; a number of impairment devices for applying test impairments to a radio communication link of the device under test; an impairment memory for storing predetermined impairment conditions; and an impairment controller communicatively coupled to said number of impairment devices and adapted to control said number of impairment devices to apply the test impairments, wherein said impairment controller is adapted to apply test impairments to the radio communication link of the device under test based on the predetermined impairment conditions stored in said memory, wherein said impairment controller is adapted to apply predetermined impairment conditions relating to impairments on a predefined mute or in a predefined geographical area. 2. The test arrangement according to claim 1 , comprising an antenna for receiving a radio frequency signal and providing the received radio frequency signal to at least one of the impairment devices, or obtaining a radio frequency signal from at least one of the impairment devices and emitting in the obtained radio frequency signal, wherein at least one impairment device is arranged in a signal path between the device under test and the antenna. 3. The test arrangement according to claim 2 , wherein the antenna comprises a directional antenna. 4. The test arrangement according to claim 1 , wherein the number of impairment devices comprises at least one internal impairment device for applying an internal impairment of the device under test, and/or at least one external impairment device for applying an impairment to the radio communication link of the device under test. 5. The test arrangement according to claim 4 , wherein said internal impairment device being adapted to modify a setup parameter of the device under test. 6. The test arrangement according to claim 4 , wherein said internal impairment device being adapted to apply an attenuation or amplification of an internal signal of the device under test or to modify a frequency tuning of the device under test. 7. The test arrangement according to claim 4 , wherein said external impairment device comprises at least one of an attenuator for attenuating a radio frequency signal in the communication link, a filter for filtering the radio frequency signal in the communication link, a fader for applying a predetermined signal degradation of the radio frequency signal in the communication link, and a signal generator for introducing an impairment signal into the radio frequency signal in the communication link. 8. The test arrangement according to claim 7 , wherein said filter comprises at least one of a bandpass filter, a highpass filter, a lowpass filter, a bandstop filter and a notch filter. 9. The test arrangement according to claim 1 , comprising a position detector for determining a local position, wherein said impairment controller is adapted to control the number of impairment devices based on the determined local position. 10. The test arrangement according to claim 9 , wherein the position detector comprises a global navigation satellite system. 11. The test arrangement according to claim 1 , comprising a network scanner for receiving network signals, wherein said impairment controller is adapted to control said number of impairment devices based on the received network signals. 12. The test arrangement according to claim 1 , comprising an acquisition device for determining impairment conditions on the radio communication link of the device under test and a local position corresponding to the respective impairment condition, and for storing the determined impairment conditions and the corresponding local position in the impairment memory. 13. The test arrangement according to claim 1 , wherein said predetermined impairment conditions comprise predetermined set-up of parameters for the number of impairment devices or desired values for a radio frequency signal transmitted by the radio communication link. 14. The test arrangement according to claim 1 , comprising a vehicle for carrying the device under test, the test controller, the number of impairment devices and the impairment controller. 15. A test method for testing a device under test, the test method comprising: controlling the device under test by a test controller to perform a predetermined test operation; applying test impairments to a radio communication link of the device under test by a number of impairment devices; and controlling said number of impairment devices by an impairment controller, the method further comprises: providing predetermined impairment conditions and corresponding local positions by an impairment memory; receiving a predetermined route or local area by an input device; determining a test sequence comprising impairment conditions based on the provided impairment conditions and the received route or local area; and applying the test impairments based on the determined test sequence.
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