IP Library › Granted Patent US 12,132,679
Granted Patent B2
US 12,132,679 · App. 17/262,746 · Granted Oct 29, 2024

Communications device, infrastructure equipment and methods

Inventors: Yassin Aden Awad (Basingstoke, GB); Shin Horng Wong (Basingstoke, GB); Kazuyuki Shimezawa (Basingstoke, GB); Vivek Sharma (Basingstoke, GB); Martin Warwick Beale (Basingstoke, GB)
Assignee: SONY CORPORATION
H04L5/0053H04L5/0007H04L5/0098H04W72/0453H04W72/23
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Quick Facts
Patent No.
US 12,132,679
App. No.
17/262,746
Granted
Oct 29, 2024
Kind
B2
Abstract

A communications device for communicating with an infrastructure equipment of a wireless communications network, the communications device comprising a transceiver configured to transmit signals and to receive signals on a wireless access interface of the wireless communications network using a plurality of activated bandwidth parts, each being formed from communications resources of a carrier within a carrier bandwidth, and a processor configured to control the transceiver to transmit the signals and to receive the signals, wherein the processor is configured in combination with the transceiver to transmit signals or to receive signals using a first of the plurality of activated bandwidth parts, to receive, via the first activated bandwidth part, an indication of one or more bandwidth parts to be activated, to select one or more bandwidth parts to be de-activated in accordance with a maximum number of activated bandwidth parts permitted for the communications device.

Claims (55)

1. A communications device for communicating in a wireless communications network, the communications device comprising:

a transceiver configured to transmit signals and to receive signals on a wireless access interface of the wireless communications network using a plurality of activated bandwidth parts, each of the bandwidth parts being formed from communications resources of a carrier within a carrier bandwidth, and

a processor configured to control the transceiver to transmit the signals and to receive the signals, wherein the processor is configured in combination with the transceiver

to transmit signals or to receive signals using a first of the plurality of activated bandwidth parts,

to receive, via the first activated bandwidth part, an indication of one or more bandwidth parts to be activated,

to select one or more bandwidth parts to be de-activated in accordance with a maximum number of activated bandwidth parts permitted for the communications device, and

in response to selection of the one or more bandwidth parts, to de-activate the selected one or more bandwidth parts,

wherein the bandwidth parts are activated and de-activated as uplink and downlink pairs based on at least one of sub-carrier spacing, symbol duration and cyclic prefix length of the bandwidth parts, and the first active bandwidth part is a primary bandwidth part that always remains active, and

the bandwidth parts differ in one or more of the sub-carrier spacing, the symbol duration and the cyclic prefix length.

2. The communications device according to claim 1 , wherein the processor is configured in combination with the transceiver

in response to receiving the indication of the one or more bandwidth parts to be activated, to select the first activated bandwidth part as a one of the selected one or more bandwidth parts to be de-activated and to activate at least one other bandwidth part.

3. The communications device according to claim 1 , wherein the processor is configured in combination with the transceiver

to receive, via the activated first bandwidth part, an indication of one or more bandwidth parts to be de-activated; and

in response to receiving the indication, to select as the selected one or more bandwidth parts to be de-activated the indicated one or more bandwidth parts to be deactivated, and

the indication of the one or more bandwidth parts to be de-activated comprises downlink control information.

4. The communications device according to claim 3 , wherein the downlink control information is transmitted using a predetermined radio network temporary identifier, the predetermined radio network temporary identifier indicating that the downlink control information comprises an indication of one or more bandwidth parts to be de-activated.

5. The communications device according to claim 3 , wherein the downlink control information is formatted according to a predetermined format, the predetermined format indicating that the downlink control information comprises an indication of one or more bandwidth parts to be de-activated.

6. The communications device according to claim 3 , wherein the downlink control information comprises control information for the communications device and one or more other communications devices.

7. The communications device according to claim 1 , wherein

the processor is configured in combination with the transceiver

to determine that a number of bandwidth parts, including the first activated bandwidth part, are currently activated for communications,

to determine that a sum of the number of the one or more bandwidth parts to be activated and the number of the currently activated bandwidth parts exceeds the maximum number of activated bandwidth parts, and

in response to determining that the sum of the number of the one or more bandwidth parts and the number of the currently activated bandwidth parts exceeds the maximum number of activated bandwidth parts, to select from the plurality of activated bandwidth parts the one or more second bandwidth parts to be de-activated in accordance with a predetermined bandwidth part deactivation priority.

8. The communications device according to claim 7 , wherein each of the plurality of bandwidth parts is associated with an index number and

in accordance with the predetermined bandwidth part deactivation priority, the one or more second bandwidth parts are selected based on the index numbers of the currently activated bandwidth parts.

9. The communications device according to claim 7 ,

in accordance with the predetermined bandwidth part deactivation priority, the one or more second bandwidth parts to be de-activated are selected based on at least one of the sub-carrier spacing, the symbol duration and the cyclic prefix length of the currently activated bandwidth parts.

10. The communications device according to claim 7 , wherein

each of the currently activated bandwidth parts is associated with a deactivation timer, and

in accordance with the predetermined bandwidth part deactivation priority, the one or more second bandwidth parts to be de-activated are selected based on a remaining timer value of the deactivation timer associated with each of the currently activated bandwidth parts.

11. The communications device according to claim 7 , wherein

in accordance with the predetermined bandwidth part deactivation priority, the one or more second bandwidth parts to be de-activated are selected based on an order in which the currently activated bandwidth parts were activated.

12. The communications device according to claim 1 , wherein a one of the plurality of bandwidth parts is designated as a default bandwidth part having a higher priority for de-activation than other ones of the plurality of bandwidth parts and

the selected one or more second bandwidth parts to be de-activated comprises the default bandwidth part.

13. The communications device according to claim 1 , wherein the one or more bandwidth parts do not overlap in frequency.

14. The communications device according to claim 1 , wherein the one or more bandwidth parts overlap in frequency.

15. The communications device according to claim 1 , wherein the processor is configured in combination with the transceiver to deactivate a bandwidth part over which an indication of one or more bandwidth parts to be activated is received.

16. The communications device according to claim 1 , wherein the first active bandwidth part is a default bandwidth part having a smaller bandwidth that any of the one or more bandwidth parts.

17. A communications device for communicating in a wireless communications network, the communications device comprising:

a transceiver configured to transmit signals and to receive signals on a wireless access interface of the wireless communications network using a plurality of activated bandwidth parts, each of the bandwidth parts being formed from communications resources of a carrier within a carrier bandwidth, and each of the plurality of activated bandwidth parts being of either a default type having a highest activation priority or a non-default type having an activation priority which is lower than the activation priority of a bandwidth part of the default type, and

a processor configured to control the transceiver to transmit the signals and to receive the signals, wherein the processor is configured in combination with the transceiver

to determine that one or more of the plurality of activated bandwidth parts is to be deactivated and that a bandwidth part of the default type is not currently activated, and

in response to determining that the one or more of the plurality of activated bandwidth parts is to be deactivated, to activate the bandwidth part of the default type in accordance with a maximum number of activated bandwidth parts permitted for the communications device,

wherein the bandwidth parts are activated and de-activated as uplink and downlink pairs based on at least one of sub-carrier spacing, symbol duration and cyclic prefix length of the bandwidth parts, and the first active bandwidth part is a primary bandwidth part that always remains active, and

the bandwidth parts differ in one or more of the sub-carrier spacing, the symbol duration and the cyclic prefix length.

18. A communications device for communicating in a wireless communications network, the communications device comprising:

a transceiver configured to transmit signals and to receive signals on a wireless access interface of the wireless communications network using a plurality of activated bandwidth parts, each of the bandwidth parts being formed from communications resources of a carrier within a carrier bandwidth, and each of the plurality of activated bandwidth parts being of either a default type having a lowest activation priority or a non-default type having an activation priority which is higher than the activation priority of a bandwidth part of the default type, and

a processor configured to control the transceiver to transmit the signals and to receive the signals, wherein the processor is configured in combination with the transceiver

to transmit signals or to receive signals using a first of the plurality of activated first bandwidth parts,

to receive, via the activated first bandwidth part, an indication that each of the plurality of activated bandwidth parts to be de-activated,

to determine that no bandwidth part of the default type is activated, and

in response to determining that no bandwidth part of the default type is activated,

to activate a bandwidth part of the default type,

wherein the bandwidth parts are activated and deactivated as uplink and downlink pairs based on at least one of sub-carrier spacing, symbol duration and cyclic prefix length of the bandwidth parts, and the first active bandwidth part is a primary bandwidth part that always remains active, and

the bandwidth parts differ in one or more of the sub-carrier spacing, the symbol duration and the cyclic prefix length.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2021
From: AWAD, YASSIN ADEN; WONG, SHIN HORNG; SHIMEZAWA, KAZUYUKI; SHARMA, VIVEK; BEALE, MARTIN WARWICK
To: SONY CORPORATION
Reel/Frame 055014/0330 →
Priority Claims (1)
EP 18185911 · Jul 26, 2018 · regional
Continuity (1)
Related Publication 20210143967A1 · May 13, 2021