IP Library › Granted Patent US 12,504,527
Granted Patent B2
US 12,504,527 · App. 18/271,068 · Granted Dec 23, 2025

Orchestrated radio frequency based sensing in multiple sensing areas

Inventors: Hugo José Krajnc (Eindhoven, NL); Peter Deixler (Arlington, MA)
Assignee: SIGNIFY HOLDING B.V.
G01S13/04G01S13/003G01S13/48
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Quick Facts
Patent No.
US 12,504,527
App. No.
18/271,068
Granted
Dec 23, 2025
Kind
B2
Abstract

The present invention relates to performing radio frequency based sensing in multiple sensing areas ( 50, 60 ) by multiple nodes ( 26, 28, 30, 38, 40, 42 ) located at different locations. A first group ( 25 ) of nodes includes at least two of the multiple nodes ( 26, 28, 30 ) and performs radio frequency based sensing in a first sensing area ( 50 ) for detecting a first sensing event. A second group ( 25 ′) of nodes including at least two of the multiple nodes ( 38, 40, 42 ) is configured for performing radio frequency based sensing in a second sensing area ( 60 ) for detecting a second sensing event based on findings obtained by performing radio frequency based sensing in the first sensing area ( 50 ). The nodes ( 26, 28, 30, 38, 40, 42 ) may perform radio frequency based sensing based on multiple communication technologies ( 34 ). The findings may include which communication technology allows confidently detecting a sensing event.

Claims (45)

1 . A radio frequency system including multiple nodes at different locations for performing radio frequency based sensing in multiple sensing areas, wherein the multiple nodes are configured for performing radio frequency based sensing in multiple sensing areas based on multiple communication technologies, and

wherein a first group of nodes including at least two of the multiple nodes is configured for performing radio frequency based sensing in a first sensing area for detecting a first sensing event, and

wherein the radio frequency system is configured for configuring a second group of nodes including at least two of the multiple nodes for performing radio frequency based sensing in a second sensing area for detecting a second sensing event; wherein the radio frequency system is configured to obtain findings obtained by performing radio frequency based sensing in the first sensing area; and wherein the second group is configured based on the obtained findings; and wherein the configuring of the second group is based on selecting a second single-channel communication technology or a second multi-channel communication technology for performing radiofrequency based sensing in the second sensing area by the second group for detecting the second sensing event; and

wherein the first group is configured for performing radio frequency based sensing by a first single-channel communication technology, and upon detecting the first sensing event in the first sensing area,

to select a first multi-channel communication technology in dependence of the first single-channel communication technology used for detecting the first sensing event and/or based on findings obtained by performing radio frequency based sensing by the first single-channel communication technology in the first sensing area, and

to perform radio frequency based sensing based on the first multi-channel communication technology in the first sensing area,

wherein the radio frequency system is configured for configuring the second group for selecting the second single-channel communication technology if the first group detected the first sensing event with a confidence level above a single-channel threshold confidence level by performing radio frequency based sensing by the first single-channel communication technology and/or for configuring the second group for selecting the second multi-channel communication technology if the first group detected the first sensing event with a confidence level above a multi-channel threshold confidence level by performing radio frequency based sensing by the first multi-channel communication technology.

2 . The radio frequency system according to claim 1 , wherein the first group is configured for performing, in dependence of a setting of communication technology parameters of the first single-channel communication technology that is optimized for detecting the first sensing event, the radio frequency based sensing by the first single-channel communication technology, and/or

wherein the first group is configured for performing, in dependence of a setting of communication technology parameters of the first multi-channel communication technology that is optimized for detecting an expected sensing event in the first sensing area, the radio frequency based sensing by the first multi-channel communication technology, and wherein the first sensing event and the expected sensing event may be sensing events of identical type or sensing events of a different type.

3 . The radio frequency system according to claim 1 , wherein the radio frequency system is configured for selecting the at least two nodes of the second group from the multiple nodes for forming the second group based on the findings obtained by performing radio frequency based sensing in the first sensing area.

4 . The radio frequency system according to claim 1 , wherein the radio frequency system is configured for configuring the second group for performing radio frequency based sensing in the second sensing area based on a difference between the first group and the second group, and/or wherein the radio frequency system is configured for configuring the first group for performing radio frequency based sensing in the first sensing area based on the difference between the first group and the second group.

5 . The radio frequency system according to claim 1 , wherein the radio frequency system is configured for configuring the second group for performing radio frequency based sensing in the second sensing area based on external effects influencing an operation of the nodes, and/or wherein the radio frequency system is configured for configuring the first group for performing radio frequency based sensing in the first sensing area based on the external effects influencing the operation of the nodes.

6 . The radio frequency system according to claim 1 , wherein the radio frequency system is configured for configuring the second group for performing radio frequency based sensing in the second sensing area further based on a difference between the first sensing event and the second sensing event, and/or wherein the radio frequency system is configured for configuring the first group for performing radio frequency based sensing in the first sensing area based on the difference between the first sensing event and the second sensing event.

7 . The radio frequency system according to claim 1 , wherein the radio frequency system is configured for forming the first group of nodes by selecting the at least two nodes of the first group from the multiple nodes further based on the first sensing event to be detected and/or based on the first sensing area.

8 . The radio frequency system according to claim 1 , wherein the radio frequency system configured for adapting one of the sensing areas by including one or more nodes to the group performing radio frequency based sensing in the one of the sensing areas, by removing one or more nodes from the group performing radio frequency based sensing in the one of the sensing areas by adjusting a direction of a beam between at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting a beam-shape of the beam between the at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting a spatial divergence of the beam between the at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting receive beamforming at at least one of the nodes receiving radio frequency signals for performing radio frequency based sensing, or by any combination thereof based on findings obtained by performing radio frequency based sensing in the other sensing area.

9 . A method for performing radio frequency based sensing in multiple sensing areas by multiple nodes located at different locations, wherein the multiple nodes are configured for performing radio frequency based sensing in multiple sensing areas based on multiple communication technologies, and wherein the method including the steps:

performing radio frequency based sensing by a first group of nodes including at least two of the multiple nodes in a first sensing area for detecting a first sensing event, and

configuring, based on findings obtained by performing radio frequency based sensing in the first sensing area, a second group of nodes including at least two of the multiple nodes for performing radio frequency based sensing in a second sensing area for detecting a second sensing event; and wherein the configuring of the second group is based on detecting a second single-channel communication technology or a second multi-channel communication technology for performing radiofrequency based sensing in the second sensing area by the second group for detecting the second sensing, event; and

configured the first group for performing radio frequency based sensing by a first single-channel communication technology, and upon detecting the first sensing event in the first sensing area,

selecting a first multi-channel communication technology in dependence of the first single-channel communication technology used for detecting the first sensing event and/or based on findings obtained by performing radio frequency based sensing by the first single-channel communication technology in the first sensing area, and

performing radio frequency based sensing based on the first multi-channel communication technology in the first sensing area; and wherein the method further comprises

configured the radio frequency system for configuring the second group for selecting the second single-channel communication technology if the first group detected the first sensing event with a confidence level above a single-channel threshold confidence level by performing radio frequency based sensing by the first single-channel communication technology and/or for configuring the second group for selectin the second multi-channel communication technology if the first group detected the first sensing event with a confidence level above a multi-channel threshold confidence level by performing radio frequency based sensing by the first multi-channel communication technology.

10 . The method according to claim 9 , wherein the method comprises one or more of the steps:

performing radio frequency based sensing in the second sensing area for detecting the second sensing event,

performing radio frequency based sensing in multiple sensing areas based on multiple communication technologies,

performing the radio frequency based sensing by the first group by a first single-channel communication technology,

upon detecting the first sensing event in the first sensing area, selecting a first multi-channel communication technology in dependence of the first single-channel communication technology used for detecting the first sensing event and/or based on findings obtained by performing radio frequency based sensing by the first single-channel communication technology in the first sensing area,

performing radio frequency based sensing based on the first multi-channel communication technology in the first sensing area,

performing the radio frequency based sensing by the first group by the first single-channel communication technology in dependence of a setting of communication technology parameters of the first single-channel communication technology that is optimized for detecting the first sensing event,

performing the radio frequency based sensing by the first group by the first multi-channel communication technology in dependence of a setting of communication technology parameters of the first multi-channel communication technology that is optimized for detecting an expected sensing event in the first sensing area,

configuring the second group based on selecting a second single-channel communication technology or a second multi-channel communication technology for performing radio frequency based sensing in the second sensing area for detecting the second sensing event based on the findings obtained by performing radio frequency based sensing in the first sensing area,

performing radio frequency based sensing based on the second single-channel communication technology or the second multi-channel communication technology in the second sensing area for detecting the second sensing event,

configuring the second group for selecting the second single-channel communication technology if the first group detected the first sensing event with a confidence level above a single-channel threshold confidence level by performing radio frequency based sensing by the first single-channel communication technology,

configuring the second group for selecting the second multi-channel communication technology if the first group detected the first sensing event with a confidence level above a multi-channel threshold confidence level by performing radio frequency based sensing by the first multi-channel communication technology,

selecting the at least two nodes of the multiple nodes for forming the second group based on the findings obtained by performing radio frequency based sensing in the first sensing area,

configuring the second group for performing radio frequency based sensing in the second sensing area based on a difference between the first group and the second group,

configuring the first group for performing radio frequency based sensing in the first sensing area based on the difference between the first group and the second group,

configuring the second group for performing radio frequency based sensing in the second sensing area based on external effects influencing an operation of the nodes,

configuring the first group for performing radio frequency based sensing in the first sensing area based on the external effects influencing the operation of the nodes,

configuring the second group for performing radio frequency based sensing in the second sensing area based on a difference between the first sensing event and the second sensing event, and

configuring the first group for performing radio frequency based sensing in the first sensing area based on the difference between the first sensing event and the second sensing event,

forming the first group of nodes by selecting the at least two nodes of the first group from the multiple nodes based on the first sensing event to be detected and/or based on the first sensing area, and

adapting one of the sensing areas by including one or more nodes to the group performing radio frequency based sensing in the one of the sensing areas, by removing one or more nodes from the group performing radio frequency based sensing in the one of the sensing areas, by adjusting a direction of a beam between at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting a beam-shape of the beam between the at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting a spatial divergence of the beam between the at least two of the nodes of the group performing radio frequency based sensing in the one of the sensing areas, by adjusting receive beamforming at at least one of the nodes receiving radio frequency signals for performing radio frequency based sensing, or by any combination thereof based on findings obtained by performing radio frequency based sensing in the other sensing area.

11 . A computer program product for performing radio frequency based sensing in multiple sensing areas by multiple nodes located at different locations, wherein the computer program product comprises program code means for causing a processor of the radio frequency system according to claim 1 , when the computer program product is run on the processor of the radio frequency system.

12 . A computer readable medium having stored the computer program product of claim 11 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2023
From: KRAJNC, HUGO JOSE; DEIXLER, PETER
To: SIGNIFY HOLDING B.V.
Reel/Frame 064163/0607 →
Priority Claims (1)
EP 21157760 · Feb 18, 2021 · regional
Continuity (2)
Provisional Application 63134634 · Jan 7, 2021
Related Publication 20240085546A1 · Mar 14, 2024
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