IP Library Granted Patent US 12,328,707
Granted Patent B2
US 12,328,707 · App. 17/934,844 · Granted Jun 10, 2025

Systems and methods for reducing UE power consumption

Inventors: Huiying Fang (Shenzhen, CN); Bo Dai (Shenzhen, CN); Jianxun Al (Shenzhen, CN)
Assignee: ZTE Corporation
H04W68/02H04W56/001H04W72/0446H04W72/0453
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Quick Facts
Patent No.
US 12,328,707
App. No.
17/934,844
Granted
Jun 10, 2025
Kind
B2
Abstract

Systems, methods and devices for reducing power consumption for reduced capability UEs can include using a dedicated common control resource set (CORESET) to reduce RF retuning in idle mode. The systems, methods and devices may include using the dedicated common CORESET and a dedicated initial downlink bandwidth part (DL BWP) to reduce RF retuning for reduced capability UEs. The systems, methods and devices may include using dedicated initial DL BWP to reduce RF retuning for reduced capability UEs. The systems, methods and devices include using simplified synchronization signal block (SSB) in DL BWP to reduce RF tuning by reduced capability UEs. The systems, methods and devices may include employing an indication in downlink control information (DCI) of whether the scheduled physical downlink shared channel (PDSCH) is for reduced capability UEs to avoid unnecessary PDSCH decoding.

Claims (40)

1. A wireless communication method, comprising:

receiving, by a first wireless communication device from a wireless communication node, a paging message within a frequency-domain resource,

wherein the frequency-domain resource corresponds to a control resource set (CORESET) configured for the first wireless communication device,

wherein the first wireless communication device is a reduced capability user equipment (UE) device in an idle mode, and

wherein a total bandwidth of the CORESET and a synchronization signal block (SSB) broadcasting information associated with the CORESET is within a reception bandwidth of the first wireless communication device.

2. The wireless communication method of claim 1 , wherein a starting position of the frequency-domain resource is aligned with a starting position of a CORESET 0, and wherein the CORESET 0 is configured for a second wireless communication device that is not a reduced capability UE device.

3. The wireless communication method of claim 2 , wherein a ratio of a frequency-domain size of the frequency-domain resource to a frequency-domain size of the CORESET 0 is one of: 1, 1/2, and 1/4.

4. The wireless communication method of claim 1 , wherein a starting position of the frequency-domain resource is aligned with a starting position of the SSB along a frequency domain.

5. The wireless communication method of claim 1 , wherein an ending position of the frequency-domain resource is aligned with an ending position of the SSB along a frequency domain.

6. The wireless communication method of claim 1 , wherein a starting position of the frequency-domain resource is an offset from a starting position of a CORESET 0 or a starting position of the SSB, and wherein the offset is configured in a system information.

7. The wireless communication method of claim 1 , further comprising:

in response to receiving the paging message, receiving system information, or a random access response (RAR) message or Msg4 in a frequency-domain resource including a whole CORESET 0 that is configured for a second wireless communication device,

wherein the second wireless communication device is not a reduced capability UE device.

8. A wireless communication method, comprising:

transmitting, by a first wireless communication node to a first wireless communication device a paging message within a frequency-domain resource,

wherein the frequency-domain resource corresponds to a control resource set (CORESET) configured for the first wireless communication device,

wherein the first wireless communication device is a reduced capability user equipment (UE) device in an idle mode, and

wherein a total bandwidth of the CORESET and a synchronization signal block (SSB) broadcasting information associated with the CORESET is within a reception bandwidth of the first wireless communication device.

9. The wireless communication method of claim 8 , wherein a starting position of the frequency-domain resource is aligned with a starting position of a CORESET 0, and wherein the CORESET 0 is configured for a second wireless communication device that is not a reduced capability UE device.

10. The wireless communication method of claim 9 , wherein a ratio of a frequency-domain size of the frequency-domain resource to a frequency-domain size of the CORESET 0 is one of: 1, 1/2, and 1/4.

11. The wireless communication method of claim 8 , wherein a starting position of the frequency-domain resource is aligned with a starting position of the SSB along a frequency domain.

12. The wireless communication method of claim 8 , wherein an ending position of the frequency-domain resource is aligned with an ending position of the SSB along a frequency domain.

13. The wireless communication method of claim 8 , wherein a starting position of the frequency-domain resource is an offset from a starting position of a CORESET 0 or a starting position of the SSB, and wherein the offset is configured in a system information.

14. The wireless communication method of claim 8 , further comprising:

transmitting system information, RAR message or Msg4 in a frequency-domain resource including a whole CORESET 0 that is configured for a second wireless communication device,

wherein the second wireless communication device is not a reduced capability UE device.

15. A wireless communication device, comprising:

at least one processor configured to:

receive, via a receiver from a wireless communication node, a paging message within a frequency-domain resource,

wherein the frequency-domain resource corresponds to a control resource set (CORESET) configured for the wireless communication device,

wherein the wireless communication device is a reduced capability user equipment (UE) device in an idle mode, and

wherein a total bandwidth of the CORESET and a synchronization signal block (SSB) broadcasting information associated with the CORESET is within a reception bandwidth of the wireless communication device.

16. The wireless communication device of claim 15 , wherein the wireless communication device is a first wireless communication device, and wherein a starting position of the frequency-domain resource is aligned with a starting position of a CORESET 0, and wherein the CORESET 0 is configured for a second wireless communication device that is not a reduced capability UE device.

17. A wireless communication node, comprising:

at least one processor configured to:

transmit, via a transmitter to a first wireless communication device, a paging message within a frequency-domain resource,

wherein the frequency-domain resource corresponds to a control resource set (CORESET) configured for the first wireless communication device,

wherein the first wireless communication device is a reduced capability user equipment (UE) device in an idle mode, and

wherein a total bandwidth of the CORESET and a synchronization signal block (SSB) broadcasting information associated with the CORESET is within a reception bandwidth of the first wireless communication device.

18. The wireless communication node of claim 17 , wherein a starting position of the frequency-domain resource is aligned with a starting position of a CORESET 0, and wherein the CORESET 0 is configured for a second wireless communication device that is not a reduced capability UE device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2022
From: FANG, HUIYING; DAI, BO; AI, JIANXUN
To: ZTE CORPORATION
Reel/Frame 061722/0293 →
Continuity (2)
Continuation PCTCN2020120836 · Oct 14, 2020
Related Publication 20230072513A1 · Mar 9, 2023
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