IP Library › Granted Patent US 12,615,070
Granted Patent B2
US 12,615,070 · App. 18/013,525 · Granted Apr 28, 2026

Radar signal for use in mobile communication equipment

Inventors: Gang Zou (Lund, SE); Ashkan Kalantari (Malmö, SE); Fredrik Dahlgren (Lund, SE); Henrik Sjöland (Lund, SE); Sven Karlsson (Malmö, SE)
Assignee: Telefonaktiebolaget LM Ericsson (Publ)
H04B1/401G01S7/006G01S7/023
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Quick Facts
Patent No.
US 12,615,070
App. No.
18/013,525
Granted
Apr 28, 2026
Kind
B2
Abstract

A wireless communications device that operates in a wireless communications system performs a radar function. This involves obtaining required radio frequency (RF) properties of a radar signal to be used for the radar function, wherein the radar function is one of a plurality of radar functions supported by the wireless communications device, each having a respective one of a plurality of different required RF properties. A transceiver of the wireless communications device is configured to transmit a predefined signal of the wireless communications system using time and frequency resources associated with the predefined signal of the wireless communications system and that satisfy the required RF properties of the radar signal. The configured transceiver is used to transmit the predefined signal of the wireless communications system.

Claims (105)

1 . A method of operating a radar function in a wireless communications device in a wireless communications system, the method comprising:

obtaining required radio frequency (RF) properties of a radar signal to be used for the radar function by extracting the required RF properties from an application layer;

communicating the required RF properties of the radar signal to a controlling node of the wireless communications system;

receiving, from the controlling node of the wireless communications system, configuration information indicating a transmission power level and time and frequency resources associated with the radar signal;

configuring a transceiver of the wireless communications device to transmit a predefined signal of the wireless communications system using time and frequency resources associated with the predefined signal of the wireless communications system and that satisfy the required RF properties of the radar signal; and

transmitting, by the configured transceiver, the predefined signal of the wireless communications system as the radar signal.

2 . The method of claim 1 , wherein the predefined signal is a training signal of the wireless communications system.

3 . The method of claim 2 , wherein the training signal is a reference signal that is used for synchronization and channel estimation in the wireless communications system.

4 . The method of claim 1 , wherein the predefined signal is a Sounding Reference Signal (SRS) of the wireless communications system, wherein the SRS is configured for use as a basis for making channel quality estimates.

5 . The method of claim 1 , wherein the wireless communication device determines a transmission power level and the time and frequency resources to be used for transmitting the radar signal.

6 . The method of claim 1 , further comprising:

selecting one of a plurality of available antenna panels of the wireless communications device,

wherein using the configured transceiver to transmit the predefined signal of the wireless communications system comprises transmitting the predefined signal of the wireless communications system using the selected one of the plurality of available antenna panels.

7 . The method of claim 6 , further comprising:

selecting one of a plurality of beam configurations of the selected one of the plurality of available antenna panels,

wherein using the configured transceiver to transmit the predefined signal of the wireless communications system comprises transmitting the predefined signal of the wireless communications system using the selected one of the plurality of beam configurations.

8 . The method of claim 1 , wherein time resources to be used for transmitting the radar signal are time resources associated with training signal transmissions in the wireless communications system.

9 . The method of claim 1 , wherein the time and frequency resources that satisfy the required RF properties of the radar signal are selected based at least in part on environmental conditions of the wireless communications device.

10 . The method of claim 1 , wherein the time and frequency resources allocated for transmission of the radar signal include one or more of:

a time period of the radar signal;

a number of symbols to be transmitted in the radar signal;

a frequency bandwidth of the radar signal;

a frequency offset of a carrier signal;

a transmission power of the radar signal.

11 . The method of claim 1 , wherein the radar signal is a radar reference signal that is not used for any other purpose in the wireless communications system and that is allocated by a controlling node in the wireless communications system.

12 . The method of claim 11 , wherein:

the radar reference signal is transmitted as a pulse train; and

the wireless communications device performs receiver operations during intervals in-between transmissions of the radar reference signal pulses.

13 . A method performed by a controlling node of a wireless communications system, the method for operating a radar function performed by a wireless communications device in the wireless communications system, the method comprising:

receiving required radio frequency (RF) properties extracted for a first radar signal to be transmitted by the wireless communications device, wherein the radar function is one of a plurality of radar functions supported by the wireless communications device, each having a respective one of a plurality of different required RF properties;

selecting a radar signal transmission configuration from a plurality of different radar signal transmission configurations; and

communicating the required RF properties indicating the selected radar signal transmission configuration to the wireless communications device,

each of the plurality of different radar signal transmission configurations defining a transmission power level and time and frequency resources associated with a predefined signal of the wireless communications system, and

the selecting the radar signal transmission configuration is-based on one or more of:

a frequency bandwidth required by the indicated required RF properties of the first radar signal to be transmitted by the wireless communications device;

an extent to which transmission of the first radar signal by the wireless communications device will interfere with receiver operations of one or more other wireless devices;

whether the wireless communications device is to concurrently transmit a second radar signal along with the radar signal;

whether a radar mode indicated by the received information is permitted to be performed at a current location of the wireless communications device.

14 . The method of claim 13 , wherein:

when the wireless communications device is to concurrently transmit the second radar signal along with the first radar signal, the information indicating the selected radar signal transmission configuration further identifies first and second antenna panels of the wireless communications device that are to be used for transmission of the respective first and second radar signals.

15 . The method of claim 13 , wherein selecting the radar signal transmission configuration is based on one or more of:

a required range of the radar function;

a required degree of resolution of range detection of the radar function; and

a required accuracy of the radar function.

16 . A non-transitory computer readable storage medium comprising instructions that, when executed by at least one processor of a wireless communications device that operates in a wireless communications system, causes the at least one processor to carry out a method of performing a radar function of the wireless communications device, the method comprising:

obtaining required radio frequency (RF) properties of a radar signal to be used for the radar function, by extracting the required RF properties;

communicating the required RF properties of the radar signal to a controlling node of the wireless communications system;

receiving, from the controlling node of the wireless communications system, configuration information defining a transmission power level and time and frequency resources associated with the radar signal;

configuring a transceiver of the wireless communications device to transmit a predefined signal of the wireless communications system using time and frequency resources associated with the predefined signal of the wireless communications system and that satisfy the required RF properties of the radar signal; and

transmitting, by the configured transceiver, the predefined signal of the wireless communications system as the radar signal.

17 . A non-transitory computer readable storage medium comprising instructions that, when executed by at least one processor of a controlling node of a wireless communications system, causes the at least one processor to carry out a method of operating a radar function in a wireless communications device in the wireless communications system, the method comprising:

receiving required radio frequency (RF) properties extracted for a first radar signal to be transmitted by the wireless communications device, wherein the radar function is one of a plurality of radar functions supported by the wireless communications device, each having a respective one of a plurality of different required RF properties;

selecting a radar signal transmission configuration from a plurality of different radar signal transmission configurations; and

communicating the required RF properties indicating the selected radar signal transmission configuration to the wireless communications device,

each of the plurality of different radar signal transmission configurations defining a transmission power level and time and frequency resources associated with a predefined signal of the wireless communications system, and

the selecting the radar signal transmission configuration is-based on one or more of:

a frequency bandwidth required by the indicated required RF properties of the first radar signal to be transmitted by the wireless communications device;

an extent to which transmission of the first radar signal by the wireless communications device will interfere with receiver operations of one or more other wireless devices;

whether the wireless communications device is to concurrently transmit a second radar signal along with the radar signal;

whether a radar mode indicated by the received information is permitted to be performed at a current location of the wireless communications device.

18 . A wireless communications device configured to operate in a wireless communications system, and further configured to perform a radar function, the wireless communications device comprising:

circuitry configured to obtain required radio frequency (RF) properties of a radar signal to be used for the radar function, by extracting the required RF properties;

circuitry configured to communicate the required RF properties of the radar signal to a controlling node of the wireless communications system;

circuitry configured to receive, from the controlling node of the wireless communications system, configuration information comprising a transmission power level and time and frequency resources to be used for transmitting the radar signal;

circuitry configured to configure a transceiver of the wireless communications device to transmit a predefined signal of the wireless communications system using time and frequency resources associated with the predefined signal of the wireless communications system and that satisfy the required RF properties of the radar signal; and

circuitry configured to transmit, by the configured transceiver, the predefined signal of the wireless communications system as the radar signal.

19 . The wireless communication device of claim 18 , wherein the predefined signal is a training signal of the wireless communications system.

20 . The wireless communication device of claim 19 , wherein the training signal is a reference signal that is used for synchronization and channel estimation in the wireless communications system.

21 . The wireless communication device of claim 18 , wherein the predefined signal is a Sounding Reference Signal (SRS) of the wireless communications system, wherein the SRS is configured for use as a basis for making channel quality estimates.

22 . The wireless communication device of claim 18 , wherein the wireless communication device determines a transmission power level and the time and frequency resources to be used for transmitting the radar signal.

23 . The wireless communication device of claim 18 , further comprising:

circuitry configured to select one of a plurality of available antenna panels of the wireless communications device,

wherein the circuitry configured to use the configured transceiver to transmit the predefined signal of the wireless communications system comprises circuitry configured to transmit the predefined signal of the wireless communications system using the selected one of the plurality of available antenna panels.

24 . The wireless communication device of claim 23 , further comprising:

circuitry configured to select one of a plurality of beam configurations of the selected one of the plurality of available antenna panels,

wherein the circuitry configured to use the configured transceiver to transmit the predefined signal of the wireless communications system comprises circuitry configured to transmit the predefined signal of the wireless communications system using the selected one of the plurality of beam configurations.

25 . The wireless communication device of claim 18 , wherein time resources to be used for transmitting the radar signal are time resources associated with training signal transmissions in the wireless communications system.

26 . The wireless communication device of claim 18 , wherein the time and frequency resources that satisfy the required RF properties of the radar signal are selected based at least in part on environmental conditions of the wireless communications device.

27 . The wireless communication device of claim 18 , wherein the time and frequency resources allocated for transmission of the radar signal include one or more of:

a time period of the radar signal;

a number of symbols to be transmitted in the radar signal;

a frequency bandwidth of the radar signal;

a frequency offset of a carrier signal;

a transmission power of the radar signal.

28 . The wireless communication device of claim 18 , wherein the radar signal is a radar reference signal that is not used for any other purpose in the wireless communications system and that is allocated by a controlling node in the wireless communications system.

29 . The wireless communication device of claim 28 , wherein:

the radar reference signal is transmitted as a pulse train; and

the wireless communications device is configured to perform receiver operations during intervals in-between transmissions of the radar reference signal pulses.

30 . The wireless communication device of claim 18 , wherein the communication device is a mm-Wave communication device.

31 . A controlling node of a wireless communications system, the controlling node configured to support a radar function performed by a wireless communications device in the wireless communications system, the controlling node comprising:

circuitry configured to receive required radio frequency (RF) properties extracted for a first radar signal to be transmitted by the wireless communications device, wherein the radar function is one of a plurality of radar functions supported by the wireless communications device, each having a respective one of a plurality of different required RF properties;

circuitry configured to select a radar signal transmission configuration from a plurality of different radar signal transmission configurations; and

circuitry configured to communicate the required RF properties indicating the selected radar signal transmission configuration to the wireless communications device,

each of the plurality of different radar signal transmission configurations defining a transmission power level and time and frequency resources associated with a predefined signal of the wireless communications system, and

the circuitry configured to select the radar signal transmission configuration is configured to make a signal transmission configuration selection based on one or more of:

a frequency bandwidth required by the indicated required RF properties of the first radar signal to be transmitted by the wireless communications device;

an extent to which transmission of the first radar signal by the wireless communications device will interfere with receiver operations of one or more other wireless devices;

whether the wireless communications device is to concurrently transmit a second radar signal along with the radar signal;

whether a radar mode indicated by the received information is permitted to be performed at a current location of the wireless communications device.

32 . The controlling node of claim 31 , wherein:

when the wireless communications device is to concurrently transmit the second radar signal along with the first radar signal, the information indicating the selected radar signal transmission configuration further identifies first and second antenna panels of the wireless communications device that are to be used for transmission of the respective first and second radar signals.

33 . The controlling node of claim 31 , wherein selecting the radar signal transmission configuration is based on one or more of:

a required range of the radar function;

a required degree of resolution of range detection of the radar function; and

a required accuracy of the radar function.

Assignments (1)
NUNC PRO TUNC ASSIGNMENT Recorded Dec 28, 2022
From: DAHLGREN, FREDRIK; KALANTARI, ASHKAN; KARLSSON, SVEN; SJÖLAND, HENRIK; ZOU, GANG
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 062229/0124 →
Continuity (1)
Related Publication 20230246668A1 · Aug 3, 2023
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