IP Library Granted Patent US 11,956,707
Granted Patent B2
US 11,956,707 · App. 17/493,083 · Granted Apr 9, 2024

Communications device, infrastructure equipment, and methods

Inventors: Brian Alexander Martin (Basingstoke, GB); Hideji Wakabayashi (Basingstoke, GB); Shinichiro Tsuda (Basingstoke, GB)
Assignee: SONY GROUP CORPORATION
H04W40/22H04W8/005H04W40/12H04B7/2606H04W36/03H04W76/14H04W76/23H04W88/04
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Quick Facts
Patent No.
US 11,956,707
App. No.
17/493,083
Granted
Apr 9, 2024
Kind
B2
Abstract

A communications device configured to transmit signals representing data to one or more in-coverage communications devices forming with the communications device a group, one of the in-coverage communications devices acting as an active relay node for the communications device, so that the in-coverage communications device can transmit signals representing the data to the infrastructure equipment of the mobile communications network, and to receive signals representing the data from the in-coverage communications device acting as the active relay node. The signals transmitted to the in-coverage communications device are received according to a device-to-device communications protocol, wherein the signals transmitted by the communications device or received by the communications device include an identifier which identifies the signals to the in-coverage communications device. One of the other in-coverage communications device can be selected by the infrastructure equipment to act as the active relay node.

Claims (46)

1. Circuitry for an infrastructure equipment forming part of a mobile communications network, the circuitry being configured to:

receive an indication, from each of one or more in-coverage communications devices in a same coverage area, of a measured signal strength of one or more signals transmitted by an out-of-coverage communications device and received by the in-coverage communications devices,

based upon the received indication of the measured signal strength received from each of the one or more in-coverage communications devices, select one of the in-coverage communications devices to act as a relay node for the out-of-coverage communications device in accordance with predetermined conditions, and

replace the in-coverage communications device selected to act as the relay node with one of the other in-coverage communications devices in the same coverage area in response to the received signal strength of the signals transmitted by the out-of-coverage communications device and received by the other in-coverage communications device exceeding the received signal strength of the signals received by the in-coverage communications device selected to act as the relay node, wherein a newly selected relay will use the same resources and ID as the relay node that was replaced.

2. The circuitry for the infrastructure equipment as claimed in claim 1 , wherein the signals transmitted by the out-of-coverage communications device include an identifier identifying a connection between the out-of-coverage communications device and the in-coverage communications device, the identifier including a unicast identifier which identifies a connection between the out-of-coverage communications device and the in-coverage communications device acting as an active relay node.

3. The circuitry for the infrastructure equipment as claimed in claim 1 , wherein the signals transmitted by the out-of-coverage communications device include an identifier identifying a connection between the out-of-coverage communications device and the in-coverage communications device, the identifier including a group identifier for the group of communications devices comprising the communications device and the one or more in-coverage communications devices.

4. The circuitry for the infrastructure equipment as claimed in claim 1 , wherein the circuitry is further configured to in response to selecting the one of the in-coverage communications devices to act as a relay node for the out-of-coverage communications device, transmit an indication that the one of the in-coverage communications devices is to act as the active relay node.

5. The circuitry for the infrastructure equipment as claimed in claim 4 , wherein the circuitry is further configured to,

in response to transmitting the indication that the in-coverage communications device is to act as the active relay node,

receive, from the in-coverage communications device, the signals representing the data received from the out-of-coverage communications device, or

transmit the signals representing the data for the out-of-coverage communications device, and

receive the signals to the out-of-coverage communications device.

6. The communications device as claimed in claim 1 , wherein the predetermined conditions include that the received signal strength of the signals transmitted by the out-of-coverage communications device and received by the other in-coverage communications device exceeds the received signal strength of the signals received by the in-coverage communications device.

7. The communications device as claimed in claim 1 , wherein the predetermined conditions include whether the signal strength received by the in-coverage communications device acting as the relay node for the signals transmitted or received by the out-of-coverage communications device has fallen below a predetermined threshold.

8. A method, comprising:

receiving an indication, from each of one or more in-coverage communications devices in a same coverage area, of a measured signal strength signal of one or more signals transmitted by an out-of-coverage communications device and received by the in-coverage communications devices; and

based upon the received indication of the measured signal strength received from each of the one or more in-coverage communications devices, selecting one of the in-coverage communications devices to act as a relay node for the out-of-coverage communications device in accordance with predetermined conditions, and

replacing the in-coverage communications device selected to act as the relay node with one of the other in-coverage communications devices in the same coverage area in response to the received signal strength of the signals transmitted by the out-of-coverage communications device and received by the other in-coverage communications device exceeding the received signal strength of the signals received by the in-coverage communications device selected to act as the relay node, wherein a newly selected relay will use the same resources and ID as the relay node that was replaced.

9. The method of claim 8 , wherein the signals transmitted by the out-of-coverage communications device include an identifier identifying a connection between the out-of-coverage communications device and the in-coverage communications device, the identifier including a unicast identifier which identifies a connection between the out-of-coverage communications device and the in-coverage communications device acting as an active relay node.

10. The method of claim 8 , wherein the signals transmitted by the out-of-coverage communications device include an identifier identifying a connection between the out-of-coverage communications device and the in-coverage communications device, the identifier including a group identifier for the group of communications devices comprising the out-of-coverage communications device and the one or more in-coverage communications devices.

11. The method of claim 8 , further comprising:

in response to selecting the one of the in-coverage communications devices to act as a relay node for the out-of-coverage communications device, transmitting an indication that the one of the in-coverage communications devices is to act as the active relay node.

12. The method of claim 11 , further comprising:

in response to transmitting the indication that the in-coverage communications device is to act as the active relay node,

receiving, from the in-coverage communications device, the signals representing the data received from the out-of-coverage communications device; or

transmitting the signals representing the data for the out-of-coverage communications device, and

receiving the signals to the out-of-coverage communications device.

13. The method of claim 8 , wherein the predetermined conditions include that the received signal strength of the signals transmitted by the out-of-coverage communications device and received by the other in-coverage communications device exceeds the received signal strength of the signals received by the in-coverage communications device.

14. The method of claim 8 , wherein the predetermined conditions include whether the signal strength received by the in-coverage communications device acting as the relay node for the signals transmitted or received by the out-of-coverage communications device has fallen below a predetermined threshold.

15. Circuitry for a communications device, the circuitry being configured to:

transmit signals to an out-of-coverage communications device, the communications device acting as an active relay node for the out-of-coverage communications device,

wherein the communications device stops being the active relay node for the out-of-coverage communications device and is replaced by another in-coverage communications device in a same coverage area in response to a received signal strength of the signals received by the out-of-coverage communications device and received by the another in-coverage communications device exceeds the received signal strength of the signals received by the communications device, wherein another in-coverage communications device will use the same resources and ID as the communications device.

16. The circuitry of claim 15 , wherein the identifier is a group identifier for the group of communications devices comprising the out-of-coverage communications device and one or more in-coverage communications devices including the communications device.

17. The circuitry of claim 16 , wherein the circuitry is configured in combination with the receiver circuitry and the transmitter circuitry to

measure a signal strength of one or more signals transmitted by the out-of-coverage communications device; and

transmit an indication of the measured signal strength to infrastructure equipment for the infrastructure equipment to determine whether the predetermined conditions are satisfied for replacing the active relay node with the other in-coverage communications devices.

18. The circuitry of claim 16 , wherein the circuitry is configured to

measure a signal strength of one or more signals transmitted by the out-of-coverage communications device;

compare the signal strength with a predetermined threshold; and

subject to predetermined conditions, transmit an indication of the measured signal strength to infrastructure equipment, the predetermined conditions including whether the signal strength received by the communications device of the signals has fallen below the predetermined threshold.

19. The circuitry of claim 16 , wherein the circuitry is configured to

receive, from infrastructure equipment, an indication that one of the other in-coverage communications devices has been selected to be the active relay node in place of the communications device;

in response to the received indication that one of the other in-coverage communications devices is to act as the active relay node for the out-of-coverage communications device, to stop transmitting the signals representing the data received from the out-of-coverage communications device, and

receive the signals representing the data transmitted by the out-of-coverage communications device to the selected other in-coverage communications device,

measure the signal strength of the received signals, and

transmit the indication of the received signal strength to the infrastructure equipment, so that the infrastructure can select the communications device as the active relay node subject to the predetermined conditions.

Assignments (1)
CHANGE OF NAME Recorded Oct 4, 2021
From: SONY CORPORATION
To: SONY GROUP CORPORATION
Reel/Frame 057724/0043 →
Priority Claims (1)
EP 15154751 · Feb 11, 2015 · regional
Continuity (3)
Continuation 16531147 · Aug 5, 2019
Continuation 15548634
Related Publication 20220030501A1 · Jan 27, 2022