IP Library › Granted Patent US 11,758,420
Granted Patent B2
US 11,758,420 · App. 17/888,989 · Granted Sep 12, 2023

Smart mechanism to manage thermal impact in 5G NR

Inventors: Alosious Pradeep Prabhakar (Singapore, SG); Wen Zhao (San Jose, CA); Lakshmi N. Kavuri (Cupertino, CA); Li Su (San Jose, CA); Sagar B. Shah (San Jose, CA); Sriram Subramanian (Santa Clara, CA); Vijay Venkataraman (San Jose, CA); Vishwanth Kamala Govindaraju (Mountain View, CA); Shiva Krishna Narra (San Jose, CA); Sanjeevi Balasubramanian (San Jose, CA); Wei Zhang (Santa Clara, CA); Madhukar K. Shanbhag (Santa Clara, CA); Sandeep K. Sunkesala (San Jose, CA); Srinivasan Nimmala (San Jose, CA); Muthukumaran Dhanapal (Dublin, CA); Tarakkumar G. Dhanani (San Jose, CA); Sree Ram Kodali (Sunnyvale, CA); Ioannis Pefkianakis (San Jose, CA); Dhruv Khati (San Jose, CA); Franco Travostino (San Jose, CA); Thanigaivelu Elangovan (Santa Clara, CA); Madhusudan Chaudhary (Campbell, CA); Geoffrey R. Hall (Cupertino, CA)
Assignee: Apple Inc.
H04W24/02H04W52/28H04W76/15H04W76/23H04W76/27H04W76/30
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Quick Facts
Patent No.
US 11,758,420
App. No.
17/888,989
Granted
Sep 12, 2023
Kind
B2
Abstract

This disclosure relates to methods and devices for mitigating overheating in a user equipment device (UE). The UE is configured to communicate over each of LTE and 5G NR and may be configured to communicate through 5G NR over each of a Sub-6GHz and a millimeter Wave (mmW) frequency band. The UE is configured to establish an ENDC connection with an enB and one or more gNBs. The UE implements intelligent transmission modification and cell measurement adjustments to mitigate overheating and reduce battery drain.

Claims (45)

1. A method comprising, by a user equipment (UE) device:

establishing an Evolved Universal Terrestrial Radio Access (EUTRA) New Radio (NR) Dual Connectivity (ENDC) connection with a network, wherein the ENDC connection comprises a connection involving an evolved node B (eNB) and a gNodeB (gNB);

initiating a data session with the network over the ENDC connection;

determining that the UE device satisfies an overheating condition; and

indicating, at least in part based on determining that the UE device satisfies the overheating condition, a preference to drop one or more cells associated with the ENDC connection that correspond to the gNB and to continue the data session using the eNB;

wherein indicating the preference to drop one or more cells associated with the ENDC connection that correspond to the gNB comprises transmitting a drop priority list to the network;

wherein the drop priority list comprises a ranked ordering of preference for dropping a plurality of secondary cells (SCells) of the gNB.

2. The method of claim 1 , further comprising: performing signal quality measurements on each of a plurality of secondary cells (SCells) of the gNB, wherein the drop priority list is determined based at least in part on the signal quality measurements.

3. The method of claim 1 ,

wherein indicating the preference to drop the one or more cells associated with the ENDC connection that correspond to the gNB comprises indicating a single cell identifier (ID) of a secondary cell (SCell) of the gNB that the UE device prefers to drop.

4. The method of claim 1 ,

wherein the eNB comprises a primary cell (PCell), and

wherein the one or more cells associated with the ENDC connection that correspond to the gNB comprise secondary cells (SCells).

5. The method of claim 1 , further comprising:

refraining from performing cell measurements associated with the gNB until the data session is completed or the UE device no longer satisfies the overheating condition.

6. A user equipment (UE) device, comprising:

a radio; and

a processor operably coupled to the radio, wherein the UE device is configured to:

establish an Evolved Universal Terrestrial Radio Access (EUTRA) New Radio (NR) Dual Connectivity (ENDC) connection with a network, wherein the ENDC connection comprises a connection involving an evolved node B (eNB) and a gNodeB (gNB);

initiate a data session with the network over the ENDC connection;

determine that the UE device satisfies an overheating condition; and

indicate, at least in part based on determining that the UE device satisfies the overheating condition, a preference to drop one or more cells associated with the ENDC connection that correspond to the gNB and to continue the data session using the eNB;

wherein indicating the preference to drop one or more cells associated with the ENDC connection that correspond to the gNB comprises transmitting a drop priority list to the network.

wherein the drop priority list comprises a ranked ordering of preference for dropping a plurality of secondary cells (SCells) of the gNB.

7. The UE device of claim 6 , wherein the UE device is further configured to: perform signal quality measurements on each of a plurality of secondary cells (SCells) of the gNB, wherein the drop priority list is determined based at least in part on the signal quality measurements.

8. The UE device of claim 6 ,

wherein indicating the preference to drop the one or more cells associated with the ENDC connection that correspond to the gNB comprises indicating a single cell identifier (ID) of a secondary cell (SCell) of the gNB that the UE device prefers to drop.

9. The UE device of claim 6 ,

wherein the eNB comprises a primary cell (PCell), and

wherein the one or more cells associated with the ENDC connection that correspond to the gNB comprise secondary cells (SCells).

10. The UE device of claim 6 , wherein the UE device is further configured to:

refrain from performing cell measurements associated with the gNB until the data session is completed or the UE device does not satisfy the overheating condition.

11. A baseband processor configured to cause a user equipment (UE) device to:

establish an Evolved Universal Terrestrial Radio Access (EUTRA) New Radio (NR) Dual Connectivity (ENDC) connection with a network, wherein the ENDC connection comprises a connection with an evolved node B (eNB) and a gNodeB (gNB);

initiate a data session with the network over the ENDC connection;

determine that the UE device satisfies an overheating condition; and

indicate, at least in part based on determining that the UE device satisfies the overheating condition, a preference to drop one or more cells associated with the ENDC connection that correspond to the gNB and to continue the data session using the eNB;

wherein indicating the preference to drop one or more cells associated with the ENDC connection that correspond to the gNB comprises transmitting a drop priority list to the network;

wherein the drop priority list comprises a ranked ordering of preference for dropping a plurality of secondary cells (SCells) of the gNB.

12. The baseband processor of claim 11 , wherein the baseband processor is further configured to cause the UE device to: perform signal quality measurements on each of a plurality of secondary cells (SCells) of the gNB, wherein the drop priority list is determined based at least in part on the signal quality measurements.

13. The baseband processor of claim 11 ,

wherein indicating the preference to drop the one or more cells associated with the ENDC connection that correspond to the gNB comprises indicating a single cell identifier (ID) of a secondary cell (SCell) of the gNB that the UE device prefers to drop.

14. The baseband processor of claim 11 ,

wherein the eNB comprises a primary cell (PCell), and

wherein the one or more cells associated with the ENDC connection that correspond to the gNB comprise secondary cells (SCells).

Continuity (3)
Division 16952906 · Nov 19, 2020
Provisional Application 62951232 · Dec 20, 2019
Related Publication 20220394513A1 · Dec 8, 2022
Cited By (1)
US 12,471,162