IP Library › Granted Patent US 11,942,984
Granted Patent B2
US 11,942,984 · App. 17/651,830 · Granted Mar 26, 2024

Communication device and operating method

Inventors: Stefan Tertinek (Graz, AT); Raf Lodewijk Jan Roovers (Wommelgem, BE)
Assignee: NXP B.V.
H04B1/7172H04B1/7183H04L1/0025
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Quick Facts
Patent No.
US 11,942,984
App. No.
17/651,830
Granted
Mar 26, 2024
Kind
B2
Abstract

In accordance with a first aspect of the present disclosure, a communication device is provided, comprising: an ultra-wideband (UWB) transceiver configured to communicate with an external communication device; a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame; wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival (AoA) mode and/or a radar mode. In accordance with a second aspect of the present disclosure, a corresponding method of operating a communication device is conceived. In accordance with a third aspect of the present disclosure, a corresponding computer program is provided.

Claims (51)

1. A bi-static radar system comprising:

a communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar model;

wherein said communication device is configured to act as an initiator;

a plurality of responders, wherein each of said responders comprises a transceiver configured to operate in a predefined sequence of modes of operation, in particular a predefined sequence which is configured by the communication device.

2. The communication device of claim 1 ,

wherein the processing unit is further configured to cause a change of pulse shape of a signal carrying the data frame while said data frame is being received or transmitted.

3. An access system, in particular a vehicle access system, comprising the communication device of claim 1 .

4. The system of claim 1 , wherein the responders are configured to toggle between a ranging mode and a radar mode in a time-multiplexed manner.

5. A communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the data frame includes one or more data sequences which are specifically suited for use in operations performed when the UWB transceiver operates in one of the different transceiver modes.

6. The communication device of claim 5 , wherein said data frame further includes time gaps between said data sequences, and/or wherein the data sequences have different lengths.

7. The communication device of claim 5 , wherein the processing unit is further configured to assign the data sequences to specific antennas within a set of antennas included in the communication device, and/or wherein the processing unit is further configured to assign the data sequences to specific transmission or receiving functions of the communication device.

8. The communication device of claim 5 , wherein the processing unit is further configured to change a power level for one or more of said data sequences.

9. A bi-static radar system comprising the communication device of claim 5 , wherein said communication device is configured to act as an initiator, the system further comprising a plurality of responders, wherein each of said responders comprises a transceiver configured to operate in a predefined sequence of modes of operation, in particular a predefined sequence which is configured by the communication device.

10. The communication device of claim 5 , wherein the processing unit is further configured to cause a change of pulse shape of a signal carrying the data frame while said data frame is being received or transmitted.

11. The communication device of claim 5 , wherein the processing unit is further configured to perform a correlation operation on the data frame before a binning operation on said data frame when the UWB transceiver operates in the ranging mode or the AoA mode.

12. The communication device of claim 5 , wherein the processing unit is further configured to perform a binning operation on the data frame before a correlation operation on said data frame when the UWB transceiver operates in the radar mode.

13. The communication device of claim 5 , wherein the processing unit is further configured to include synchronization information in said data frame when the UWB transceiver operates in the radar mode.

14. The communication device of claim 5 , wherein the processing unit is further configured to initialize the UWB transceiver for use in the radar mode, in particular by using previously obtained configuration data.

15. An access system, in particular a vehicle access system, comprising the communication device of claim 5 .

16. A communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the processing unit is further configured to perform a correlation operation on the data frame before a binning operation on said data frame when the UWB transceiver operates in the ranging mode or the AoA mode.

17. A communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the processing unit is further configured to perform a binning operation on the data frame before a correlation operation on said data frame when the UWB transceiver operates in the radar mode.

18. A communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the processing unit is further configured to include synchronization information in said data frame when the UWB transceiver operates in the radar mode.

19. A communication device, comprising:

an ultra-wideband, UWB, transceiver configured to communicate with an external communication device;

a processing unit configured to switch the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the processing unit is further configured to initialize the UWB transceiver for use in the radar mode, in particular by using previously obtained configuration data.

20. A method of operating a communication device, the method comprising:

communicating, by an ultra-wideband, UWB, transceiver comprised in the communication device, with an external communication device;

switching, by a processing unit comprised in the communication device, the UWB transceiver between different transceiver modes of operation while the UWB transceiver receives or transmits a data frame;

wherein the different transceiver modes of operation include a ranging mode, an angle-of-arrival, AoA, mode and/or a radar mode;

wherein the data frame includes one or more data sequences which are specifically suited for use in operations performed when the UWB transceiver operates in one of the different transceiver modes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2022
From: TERTINEK, STEFAN; ROOVERS, RAF LODEWIJK JAN
To: NXP B.V.
Reel/Frame 059056/0034 →
Priority Claims (1)
EP 21158577 · Feb 23, 2021 · regional
Continuity (1)
Related Publication 20220271793A1 · Aug 25, 2022
Cited By (2)
US 12,323,943 US 12,438,571