IP Library Granted Patent US 12,483,984
Granted Patent B2
US 12,483,984 · App. 17/986,170 · Granted Nov 25, 2025

Beam failure recovery in a power saving operation

Inventors: Hua Zhou (Vienna, VA); Esmael Hejazi Dinan (McLean, VA); Kyungmin Park (Vienna, VA); Ali Cagatay Cirik (Chantilly, VA); Alireza Babaei (Fairfax, VA); Hyoungsuk Jeon (Centreville, VA); Kai Xu (Herndon, VA)
Assignee: Comcast Cable Communications, LLC
H04W52/0229G06F1/3209H04W24/02H04W72/23H04W76/20
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Quick Facts
Patent No.
US 12,483,984
App. No.
17/986,170
Filed
Nov 14, 2022
Granted
Nov 25, 2025
Kind
B2
Art Unit
2473
USPC
713/320
Abstract

Wireless communication techniques for power saving are described. A wireless device may be configured with one or more power saving configurations, such as a dormant state. During a dormant state, downlink channel monitoring (e.g., on a secondary cell) may be stopped and/or a beam failure recovery procedure may be performed.

Claims (78)

1 . A method comprising:

receiving, by a wireless device, beam failure recovery (BFR) configuration parameters of a secondary cell;

during a time period in which the secondary cell is in a dormant state:

stopping monitoring of a downlink control channel on the secondary cell; and

stopping transmitting uplink signals on the secondary cell; and

performing, during the time period in which the secondary cell is in the dormant state and the wireless device is not monitoring the downlink control channel on the secondary cell, a BFR procedure for the secondary cell.

2 . The method of claim 1 , further comprising:

receiving downlink control information (DCI) indicating a transition, of the secondary cell, from a non-dormant state to the dormant state, and

wherein the stopping monitoring of the downlink control channel is based on the DCI.

3 . The method of claim 1 , further comprising:

receiving a command indicating activation of a power saving mode, and

wherein the stopping monitoring of the downlink control channel is based on the command.

4 . The method of claim 1 , further comprising:

monitoring, while the secondary cell is in a non-dormant state, the downlink control channel on the secondary cell.

5 . The method of claim 1 , further comprising:

detecting, while the secondary cell is in a non-dormant state, one or more first beam failure instances (BFIs); and

detecting, while the secondary cell is in the dormant state, one or more second BFIs, and

wherein the performing the BFR procedure is based on the one or more first BFIs and the one or more second BFIs.

6 . The method of claim 1 , further comprising:

detecting, while the secondary cell is in the dormant state, one or more beam failure instances (BFIs), and

wherein the performing the BFR procedure is based on a quantity of the one or more BFIs satisfying a threshold.

7 . The method of claim 1 , further comprising:

sending, while the secondary cell is in a non-dormant state and based on a beam failure of the secondary cell, a BFR request, and

wherein performing the BFR procedure comprises receiving a BFR response to the BFR request.

8 . A wireless device comprising:

one or more processors; and

memory storing instructions that, when executed by the one or more processors, cause the wireless device to:

receive beam failure recovery (BFR) configuration parameters of a secondary cell;

during a time period in which the secondary cell is in a dormant state:

stop monitoring of a downlink control channel on the secondary cell; and

stop transmitting uplink signals on the secondary cell; and

perform, during the time period in which the secondary cell is in the dormant state and the wireless device is not monitoring the downlink control channel on the secondary cell, a BFR procedure for the secondary cell.

9 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

receive downlink control information (DCI) indicating a transition, of the secondary cell, from a non-dormant state to a dormant state, and

wherein the instructions that, when executed by the one or more processors, cause the wireless device to stop monitoring of the downlink control channel, cause the wireless device to stop monitoring of the downlink control channel based on the DCI.

10 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

receive a command indicating activation of a power saving mode, and

wherein the instructions that, when executed by the one or more processors, cause the wireless device to stop monitoring of the downlink control channel, cause the wireless device to stop monitoring of the downlink control channel based on the command.

11 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

monitor, while the secondary cell is in a non-dormant state, the downlink control channel on the secondary cell.

12 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

detect, while the secondary cell is in a non-dormant state, one or more first beam failure instances (BFIs); and

detect, while the secondary cell is in the dormant state, one or more second BFIs, and

wherein the instructions that, when executed by the one or more processors, cause the wireless device to perform the BFR procedure, cause the wireless device to perform the BFR procedure based on the one or more first BFIs and the one or more second BFIs.

13 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

detect, while the secondary cell is in the dormant state, one or more beam failure instances (BFIs), and

wherein the instructions that, when executed by the one or more processors, cause the wireless device to perform the BFR procedure, cause the wireless device to perform the BFR procedure based on a quantity of the one or more BFIs satisfying a threshold.

14 . The wireless device of claim 8 , wherein the instructions, when executed by the one or more processors, further cause the wireless device to:

send, while the secondary cell is in a non-dormant state and based on a beam failure of the secondary cell, a BFR request, and

wherein the instructions that, when executed by the one or more processors, cause the wireless device to perform the BFR procedure, cause the wireless device to receive a BFR response to the BFR request.

15 . A non-transitory computer-readable medium comprising instructions that, when executed, configure a wireless device to:

receive beam failure recovery (BFR) configuration parameters of a secondary cell;

during a time period in which the secondary cell is in a dormant state:

stop monitoring of a downlink control channel on the secondary cell; and

stop transmitting uplink signals on the secondary cell; and

perform, during the time period in which the secondary cell is in the dormant state and the wireless device is not monitoring the downlink control channel on the secondary cell, a BFR procedure for the secondary cell.

16 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

receive downlink control information (DCI) indicating a transition, of the secondary cell, from a non-dormant state to a dormant state, and

wherein the instructions that, when executed, configure the wireless device to stop monitoring of the downlink control channel, configure the wireless device to stop monitoring of the downlink control channel based on the DCI.

17 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

receive a command indicating activation of a power saving mode; and

wherein the instructions that, when executed, configure the wireless device to stop monitoring of the downlink control channel, configure the wireless device to stop monitoring of the downlink control channel based on the command.

18 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

monitor, while the secondary cell is in a non-dormant state, the downlink control channel on the secondary cell.

19 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

detect, while the secondary cell is in a non-dormant state, one or more first beam failure instances (BFIs); and

detect, while the secondary cell is in the dormant state, one or more second BFIs, and

wherein the instructions that, when executed, configure the wireless device to perform the BFR procedure, configure the wireless device to perform the BFR procedure based on the one or more first BFIs and the one or more second BFIs.

20 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

detect, while the secondary cell is in the dormant state, one or more beam failure instances (BFIs), and

wherein the instructions that, when executed, configure the wireless device to perform the BFR procedure, configure the wireless device to perform the BFR procedure based on a quantity of the one or more BFIs satisfying a threshold.

21 . The non-transitory computer-readable medium of claim 15 , wherein the instructions, when executed, further configure the wireless device to:

send, while the secondary cell is in a non-dormant state and based on a beam failure of the secondary cell, a BFR request, and

wherein the instructions that, when executed, configure the wireless device to perform the BFR procedure, configure the wireless device to receive a BFR response to the BFR request.

22 . The method of claim 1 , wherein one or more DRX configuration parameters, associated with a DRX off state, are not applied to the secondary cell during the dormant state.

23 . The method of claim 1 , wherein one or more DRX configuration parameters, associated with a DRX off state, are applied to the secondary cell during a second time period in which the secondary cell is in a non-dormant state.

24 . The method of claim 1 , further comprising transitioning the secondary cell to the dormant state by applying one or more dormant state configuration parameters to the secondary cell.

25 . The method of claim 1 , wherein the stop transmitting uplink signals on the secondary cell comprises stopping physical uplink shared channel (PUSCH) transmission and physical uplink control channel (PUCCH) transmission on the secondary cell.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2026
From: COMCAST CABLE COMMUNICATIONS, LLC
To: OFINNO, LLC
Reel/Frame 074245/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2023
From: ZHOU, HUA; DINAN, ESMAEL HEJAZI; PARK, KYUNGMIN; CIRIK, ALI CAGATAY; BABAEI, ALIREZA; JEON, HYOUNGSUK; XU, KAI
To: COMCAST CABLE COMMUNICATIONS, LLC
Reel/Frame 063850/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2023
From: ZHOU, HUA; DINAN, ESMAEL HEJAZI; CIRIK, ALI CAGATAY; BABAEI, ALIREZA; JEON, HYOUNGSUK; PARK, KYUNGMIN; XU, KAI
To: COMCAST CABLE COMMUNICATIONS, LLC
Reel/Frame 063850/0387 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2023
From: ZHOU, HUA; DINAN, ESMAEL HEJAZI; PARK, KYUNGMIN; CIRIK, ALI CAGATAY; BABAEI, ALIREZA; JEON, HYOUNGSUK; XU, KAI
To: COMCAST CABLE COMMUNICATIONS, LLC
Reel/Frame 063850/0402 →
Continuity (4)
Continuation 16577847 · Sep 20, 2019
Provisional Application 62734561 · Sep 21, 2018
Provisional Application 62790306 · Jan 9, 2019
Related Publication 20230069898A1 · Mar 9, 2023
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R1-1810448 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: MediaTek Inc., Title: UE adaptation to the traffic and UE power consumption characteristics. [cited by applicant]
R1-1810468 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: Panasonic, Title: Discussion on UE traffic adaptation and power consumption characteristics. [cited by applicant]
R1-1810562 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: CATT, Title: UE Power Saving Scheme with Multi-dimensional Adaptation. [cited by applicant]
R1-1810795 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: Intel Corporation, Title: UE Adaptation to the traffic and UE power consumption characteristics. [cited by applicant]
R1-1810892 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: Samsung, Title: Discussion on UE adaptation schemes. [cited by applicant]
R1-1811050 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: CMCC, Title: Considerations for UE power saving. [cited by applicant]
R1-1811127 3GPP TSG RAN WG1 Meeting #94bis, Chengdu, China, Oct. 8-12, 2018, Source: Apple Inc., Title: Network-indication based Approaches for UE Power Saving. [cited by applicant]
R1-1812232 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Huawei, HiSilicon, Title: Design of power saving signal. [cited by applicant]
R1-1812331 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: vivo, Title: Discussion on triggering adaptation of UE power consumption characteristics. [cited by applicant]
R1-1812362 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: MediaTek Inc., Title: Triggering adaptation for UE power saving. [cited by applicant]
R1-1812422 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: ZTE, Title: Considerations on triggering for UE power saving. [cited by applicant]
R1-1812514 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Intel Corporation, Title: Triggering UE adaptation to power consumption characteristics. [cited by applicant]
R1-1812591 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: LG Electronics, Title: Discussion on power saving for CA operation. [cited by applicant]
R1-1812642 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: CATT, Title: UE Power saving schemes with power saving signal/channel/procedures. [cited by applicant]
R1-1812750 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: SONY, Title: Conditions and procedures for adaptation of power consumption characteristics. [cited by applicant]
R1-1812825 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: OPPO, Title: Triggering Adaptation of UE Power Consumption Characteristics. [cited by applicant]
R1-1812890 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: CMCC, Title: Considerations on power saving signal design. [cited by applicant]
R1-1812926 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Apple Inc., Title: Power Saving Techniques based on Explicit Indication. [cited by applicant]
R1-1813012 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Samsung, Title: Triggering adaptation schemes. [cited by applicant]
R1-1813076 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Spreadtrum Communications, Title: Discussion on triggering adaptation for UE power saving. [cited by applicant]
R1-1813183 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Ericsson, Title: Triggers of NR UE power saving. [cited by applicant]
R1-1813244 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: InterDigital, Inc., Title: Discussion on Triggering of Power Mode Adaptation. [cited by applicant]
R1-1813448 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Qualcomm Incorporated, Title: Triggering Adaptation of UE Power Consumption Characteristics. [cited by applicant]
R1-1813495 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Panasonic, Title: Discussion on UE traffic adaptation procedures. [cited by applicant]
R1-1813516 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: ASUSTeK, Title: Triggering adaptation of UE power consumption. [cited by applicant]
R1-1813621 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Nokia, Nokia Shanghai Bell, Title: On UE Power Saving Triggering Mechanisms. [cited by applicant]
R1-1813625 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: Convida Wireless, Title: Triggering Adaptation of UE Power Consumption Characteristics. [cited by applicant]
R2-1700019 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: Samsung, Title: Random Access in NR—Flexible UE Bandwidth Aspects. [cited by applicant]
R2-1700023 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: ASUSTeK, Title: Consideration on use cases of 2-step RACH procedure. [cited by applicant]
R2-1700024 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: ASUSTeK, Title: Consideration on fallback of 2-step RACH procedure. [cited by applicant]
R2-1700089 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: Huawei, HiSilicon, Title: Considerations on RACH procedure in NR. [cited by applicant]
R2-1700103 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: National Instruments, Title: Considerations on the Random-Access Procedure in Massive MIMO NR. [cited by applicant]
R2-1700137 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: SONY, Title: 2-step RACH to 4-step RACH fallback. [cited by applicant]
R2-1700155 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: ZTE, ZTE Microelectronics, Title: Consideration on the two-step RACH in NR. [cited by applicant]
R2-1700202 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: CATT, Title: Design principles for random access procedure in NR. [cited by applicant]
R2-1700203 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: CATT, Title: Random access procedure in NR. [cited by applicant]
R2-1700204 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: CATT, Title: Impact of NR physical layer design on RA. [cited by applicant]
R2-1700205 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: CATT, Title: Consideration on 2-step RA. [cited by applicant]
R2-1700237 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: InterDigital Communications, Title: 2-Step Random Access Procedure in NR. [cited by applicant]
R2-1700335 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: Intel Corporation, Title: Further considerations of random access in NR. [cited by applicant]
R2-1700355 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: ASUSTeK, Title: Discussion on latency of random access in NR. [cited by applicant]
R2-1700356 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: ASUSTeK, MediaTek Inc., Title: Consideration on use cases of 2-step RACH procedure. [cited by applicant]
R2-1700357 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: Samsung, Title: Consideration on 2-step RACH. [cited by applicant]
R2-1700619 3GPP TSG RAN WG2 NR Ad Hoc, Spokane, USA, Jan. 17-19, 2017, Source: NTT Docomo, Inc., Title: Remaining RAN2 aspects on random access procedure for NR. [cited by applicant]
R1-1720903 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: ASUSTeK, Title: Power control on SRS for beam management. [cited by applicant]
R1-1720915 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: China Telecom, Title: Discussion on Power Offset for SUL. [cited by applicant]
R1-1720928 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Motorola Mobility, Lenovo, Title: On non-CA NR UL power control. [cited by applicant]
R1-1721027 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: On Carrier aggregation related aspects. [cited by applicant]
R1-1721028 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Remaining issues for NR power control framework. [cited by applicant]
R1-1721030 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Power headroom reporting. [cited by applicant]
R1-1721031 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Remaining issues of closed loop power control in NR. [cited by applicant]
R1-1721032 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Remaining issues of PUSCH power control. [cited by applicant]
R1-1721033 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Remaining issues of PUCCH power control. [cited by applicant]
R1-1721034 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Remaining issues of SRS power control. [cited by applicant]
R1-1721038 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Nokia, Nokia Shanghai Bell, Title: Remaining details on NR power control framework. [cited by applicant]
3gpp ts 38.212 V1.2.1 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Multiplexing and Channel Coding (Release 15). [cited by applicant]
R1-1721371 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: ZTE, Sanechips, Title: Summary of remaining issues on CSI measurement. [cited by applicant]
R1-1721451 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Ericsson, Title: Summary of views on CSI reporting. [cited by applicant]
R1-1800879 3GPP TSG RAN WG1 NR Ad Hoc, Vancouver, Canada, Jan. 22-26, 2018, Source: Qualcomm Incorporated, Title: Remaining Issues on BWP. [cited by applicant]
R1-1803301 3GPP TSG RAN WG1 Meeting #92, Athens, Greece, Feb. 26-Mar. 2, 2018, Source: Ericsson, Title: Summary of CSI reporting v3. [cited by applicant]
R2-1706680 3GPP TSG-RAN WG2 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: AT&T, Title: Beam Failure Recovery Mechanism and RLF. [cited by applicant]
R2-1713170 3GPP TSG RAN WG2 Meeting #100, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Nokia (rapporteur), Title: Report of [99bis#32][LTE/euCA] Faster activation for Scells (Nokia). [cited by applicant]
R2-1714289 3GPP TSG RAN WG2 Meeting #100, Reno, USA, Nov. 27-Dec. 1, 2017, Source: Nokia, Nokia Shanghai Bell, Title: Running CR for euCA Stage-2. [cited by applicant]
R2-1801432 3GPP TSG RAN WG2 NR Ad Hoc, Vancouver, Canada, Jan. 22-26, 2018, Source: Qualcomm Incorporated, Title: Dormant BWP for fast SCell activation. [cited by applicant]
R2-1802756 3GPP TSG RAN WG2 Meeting #101, Athens, Greece, Feb. 26-Mar. 2, 2018, Source: Nokia, Nokia Shanghai Bell, Title: Remaining details on temporary CQI reporting during activation. [cited by applicant]
R2-1803564 3GPP TSG RAN WG2 Meeting #101, Athens, Greece, Feb. 26-Mar. 2, 2018, Source: Qualcomm Incorporated, Title: Dormant BWP for fast SCell activation. [cited by applicant]
R2-1806774 3GPP TSG RAN WG2 Meeting #102, Busan, Korea, May 21-25, 2018, Source: Nokia, Nokia Shanghai Bell, Title: Finalization of dormant Scell state. [cited by applicant]
R2-1806924 3GPP TSG RAN WG2 Meeting #102, Busan, Korea, May 21-25, 2018, Source: Qualcomm Incorporated, Title: SCell Dormant State Transitions based on New Timers & MAC-CEs. [cited by applicant]
R2-1807481 3GPP TSG RAN WG2 Meeting #102, Busan, Korea, May 21-25, 2018, Source: Huawei, HiSilicon, Title: Remaining issues of temporary CQI reporting. [cited by applicant]
R2-1808570 3GPP TSG RAN WG2 Meeting #102, Busan, Korea, May 21-25, 2018, Source: Qualcomm Incorporated, Title: Dormant BWP for fast SCell activation. [cited by applicant]
R2-1808809 3GPP TSG RAN WG2 Meeting #102, Busan, Korea, May 21-25, 2018, Source: Ericsson, Title: CR on Dormat SCell state transition MAC CE. [cited by applicant]
R2-1810063 3GPP TSG RAN WG2 NR Ad Hoc, Busan, Korea, Jul. 2-6, 2018, Source: Ericsson, Title: Dormant SCell state in NR. [cited by applicant]
3GPP TSG-RAN WG2 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: RAN2 Chairman (Intel), Title: Chairman Notes. [cited by applicant]
3GPP TS 38.211 V2.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical Channels and Modulation (Release 15). [cited by applicant]
3GPP TS 38.214 V2.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical Layer Procedures for Data (Release 15). [cited by applicant]
3GPP TS 38.331 V1.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) Protocol Specification (Release 15). [cited by applicant]
RP-181344 3GPP TSG RAN Meeting #80, La Jolla, USA, Jun. 11-14, 2018, Source: Ericsson, Nokia, Nokia Shanghai Bell, Huawei, Title: New WID on MR-DC enhancements (NR_MRDC_Enh). [cited by applicant]
3GPP TS 38.331 V0.4.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) Protocol Specification (Release 15). [cited by applicant]
R1-18xxxx 3GPP TSG RAN WG1 Meeting #95, Spokane, USA, Nov. 12-16, 2018, Source: OPPO, Title: Summary of RAN1#95 Tdocs on UCI enhancements for URLLC. [cited by applicant]
3GPP TS 38.213 V15.2.0 (Jun. 2018), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical layer procedures for control (Release 15). [cited by applicant]
3GPP TS 38.321 V15.2.0 (Jun. 2018), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Medium Access Control (MAC) protocol specification (Release 15). [cited by applicant]
3GPP TS 38.331 V15.2.1 (Jun. 2018), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) protocol specification (Release 15). [cited by applicant]
Lagent, et al., “New Radio Beam-Based Access to Unlicensed Spectrum: Design Challenges and Solutions,” InterDigital Communications, Inc., Melville, New York, USA, Sep. 27, 2018. [cited by applicant]
R1-1701260 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: ZTE, ZTE Microelectronics, Title: WF on 2-step RACH. [cited by applicant]
R1-1613547 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Nokia, InterDigital, Title: Way Forward on Two-Step RACH Fallback. [cited by applicant]
R1-1613548 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Nokia, Title: Way Forward on Two-Step RACH Procedure. [cited by applicant]
R1-1613685 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Nokia, ASB, MediaTek, Ericson, Title: Way Forward on Two-Step RACH Procedure. [cited by applicant]
R1-1611274 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: ZTE Corporation, ZTE Microelectronics, Title: On 2-Step RACH Procedure in NR. [cited by applicant]
R1-1611694 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Huawei, HiSilicon, Title: Considerations on NR RACH Preamble and Channel Design. [cited by applicant]
R1-1612033 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Qualcomm Incorporated, Title: 2 step and 4 step RACH. [cited by applicant]
R1-1612068 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Qualcomm Incorporated, Title: UE Power Evaluation for DRX with Wake-Up Signaling. [cited by applicant]
R1-1612142 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: MediaTek Inc., Title: Considerations on 2-step RACH physical channel design. [cited by applicant]
R1-1612218 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: ETRI, Title: On 2-step RACH procedure for high speed train scenario for NR. [cited by applicant]
R1-1612299 3GPP TSG RAN WG1 Metting #87, Reno, USA, Nov. 14-18, 2016, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: Random access principles for new radio. [cited by applicant]
May 13, 2019—European Search Report—19151142.7. [cited by applicant]
Huawei et al: “Independent and joint control of CSI-RS transmission and CSI reporting for NR MIMO”, Jan. 16, 2017. [cited by applicant]
Huawei Hisilicon: “Independent and joint control of CSI-RS transmission and CSI reporting for NR MIMO”, Nov. 13, 2016. [cited by applicant]
Mar. 25, 2019—European Search Report—EP 19150331.7. [cited by applicant]
Jan. 1, 2018—3GPP Standard; 3GPP TS 38.331—3rd Generation Partnership Project; Technical Specification Gorup Radio Access Network; NR; Radio Resource Control (RRC) Protocol specific (Release 15). [cited by applicant]
Sep. 17, 2017—3GPP TSG-RAN WG1 NR Ad Hoc #3—Ericsson “On semi-persistent CSI reporting on PUSCH”. [cited by applicant]
3GPP TS 36.211 V14.4.0 (Sep. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA); Physical Channels… [cited by applicant]
3GPP TS 36.212 V14.3.0 (Jun. 2017); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA); Multiplexing and … [cited by applicant]
3GPP TS 36.212 V14.4.0 (Sep. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA); Multiplexing and … [cited by applicant]
3GPP TS 36.213 V14.4.0 (Sep. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA); Physical Layer Pr… [cited by applicant]
3GPP TS 36.300 V14.4.0 (Sep. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Univer… [cited by applicant]
3GPP TS 36.321 V14.4.0 (Sep. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA); Medium Access Con… [cited by applicant]
3GPP TS 38.212 V15.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NT; Multiplexing and Channel Coding (Release 15). [cited by applicant]
3GPP TS 38.213 V2.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical Layer Procedures for Control (Release 15). [cited by applicant]
3GPP TS 38.300 V2.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; NR and NG-RAN Overall Description; Stage 2 (Release 15). [cited by applicant]
3GPP TS 38.321 V2.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Medium Access Control (MAC) Protocol Specification (Release 15). [cited by applicant]
3GPP TS 38.331 V15.0.0 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) Protocol Specification (Release 15). [cited by applicant]
3gpp tsg ran WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Title: RAN1 Chairman's Notes. [cited by applicant]
3GPP TS 38.213 V1.2.1 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical Layer Procedures for Control (Release 15). [cited by applicant]
3GPP TS 38.214 V1.2.1 (Dec. 2017), Technical Specification, 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical Layer Procedures for Data (Release 15). [cited by applicant]
R2-180xxxx 3GPP TSG RAN WG2 Meeting #101, Sanya, China, Apr. 16-20, 2018, Source: Nokia, Nokia Shanghai Bell, Title: Running MAC CR for euCA. [cited by applicant]
R1-1803571 3GPP TSG RAN WG1 Meeting #92bis, Sanya, China, Apr. 16-20, 2018, Source: MCC Support, Title: Final Report of 3GPP TSG RAN WG1 #92 v1.0.0. [cited by applicant]
R1-1721510 3GPP TSG RAN WG1 Meeting #91, Reno, USA, Nov. 27-Dec. 1, 2017, Source: NTT Docomo, Inc., Title: Offline summary for AI 7.3.3.4 UL data transmission procedure. [cited by applicant]
R1-1709907 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: Xinwei, Title: Discussion on Beam Failure Recovery. [cited by applicant]
R1-1709929 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: Huawei, HiSilicon, Title: General views on beam failure recovery. [cited by applicant]
R1-1710058 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: CATT, Title: Considerations on DL beam failure and recovery. [cited by applicant]
R1-1710283 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: LG Electronics, Title: Discussion on beam failure recovery. [cited by applicant]
R1-1710400 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: vivo, Title: Beam failure recovery procedure. [cited by applicant]
R1-1710596 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: Lenovo, Motorola Mobility, Title: Discussion of beam recovery procedure. [cited by applicant]
R1-1710810 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: MediaTek Inc., Title: Mechanism for flexible beam failure recovery. [cited by applicant]
R1-1710926 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: InterDigital, Inc., Title: On Remaining Details of Beam Failure Recovery. [cited by applicant]
R1-1711017 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: Ericsson, Title: Mechanism to recover from beam failure. [cited by applicant]
R1-1711291 3GPP TSG-RAN WG1 NR Ad Hoc, Qingdao, China, Jun. 27-30, 2017, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: Beam Recovery. [cited by applicant]
R1-1712153 3GPP TSG RAN WG1 Meeting #90, Prague, Czech Republic, Aug. 21-25, 2017, Source: Huawei, HiSilicon, Title: Overview of bandwidth part. [cited by applicant]
R1-1713204 3GPP TSG RAN WG1 Meeting #90, Prague, Czech Republic, Aug. 21-25, 2017, Source: LG Electronics, Title: Further remaining details on wider bandwidth operation. [cited by applicant]
R1-1713978 3GPP TSG RAN WG1 Meeting #90, Prague, Czech Republic, Aug. 21-25, 2017, Source: MediaTek Inc., Title: Further Details on Bandwidth Part Operation in NR. [cited by applicant]
R1-1715439 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: ZTE, Sanechips, Title: Remaining details on CSI reporting. [cited by applicant]
R1-1715858 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: LG Electronics, Title: Discussions on CSI reporting. [cited by applicant]
R1-1715939 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: Samsung, Title: CSI reporting and UCI multiplexing. [cited by applicant]
R1-1716349 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: Ericsson, Title: On CSI reporting. [cited by applicant]
R1-1716357 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: Ericsson, Title: On semi-persistent CSI reporting on PUSCH. [cited by applicant]
R1-1716901 3GPP TSG RAN WG1 Meeting NR Ad Hoc, Nagoya, Japan, Sep. 18-21, 2017, Source: Samsung, Ericsson, Huawei, HiSilicon, ZTE, Sanechips, Mediatek, NTT Docomo, Nokia, Nokia Shanghai Bell, KDDI, Vodafone, CEWiT, IITH… [cited by applicant]
R1-1717300 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: Huawei, HiSilicon, Title: Details of CSI reporting on PUCCH/PUSCH. [cited by applicant]
R1-1717367 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: Intel Corporation, Title: Remaining issues on CSI reporting. [cited by applicant]
R1-1717423 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: ZTE, Sanechips, Title: Remaining details on CSI reporting. [cited by applicant]
R1-1717471 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: vivo, Title: Discussion on CSI reporting. [cited by applicant]
R1-1717604 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: Samsung, Title: CSI reporting and UCI multiplexing. [cited by applicant]
R1-1717811 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: CATT, Title: Remaining issues on CSI reporting. [cited by applicant]
R1-1717940 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: LG Electronics, Title: Discussions on CSI reporting. [cited by applicant]
R1-1718191 3GPP TSG RAN WG1 Meeting #90bis, Prague, Czech Republic, Oct. 9-13, 2017, Source: NTT Docomo, Inc., Title: Remaining Issues on Feedback Design for CSI Type I and Type II. [cited by applicant]
R1-1700035 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Huawei, HiSilicon, Title: Further Consideration on two-step RACH. [cited by applicant]
R1-1700105 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: ZTE, ZTE Microelectronics, Title: 2-step Random Access Procedure. [cited by applicant]
R1-1700172 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: MediaTek Inc., Title: On 2-step random access procedure and physical channel in NR. [cited by applicant]
R1-1700186 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: CATT, Title: Further considerations on a 2-step RA Procedure. [cited by applicant]
R1-1700300 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Ericsson, Title: NR two-step random access procedure. [cited by applicant]
R1-1700311 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: AT&T, Title: 2-Step RA Procedure for NR. [cited by applicant]
R1-1700426 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: ITRI, Title: Discussion on 2-step RA procedure issues. [cited by applicant]
R1-1700464 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: LG Electronics, Title: Discussion on 2 step RACH. [cited by applicant]
R1-1700577 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: ETRI, Title: On 2-step RA procedure for NR. [cited by applicant]
R1-1700587 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: HTC, Title: Design considerations for 2-step RACH. [cited by applicant]
R1-1700652 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: On 2-step Random Access Procedure. [cited by applicant]
R1-1700668 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Sony, Title: Discussions on 2 Steps RACH Procedure. [cited by applicant]
R1-1700703 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: InterDigital Communications, Title: 2-step random access procedure. [cited by applicant]
R1-1700792 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Qualcomm Incorporated, Title: 2-step RACH procedure consideration. [cited by applicant]
R1-1700880 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Motorola Mobility, Title: Physical channel design for 2-step RACH. [cited by applicant]
R1-1700892 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: Samsung, Title: NR 2-step random access procedure. [cited by applicant]
R1-1701275 3GPP TSG RAN WG1 NR Ad Hoc, Spokane, USA, Jan. 16-20, 2017, Source: ZTE, ZTE Microelectronics, MediaTek, Title: WF on 2-Step RACH. [cited by applicant]
R1-1703139 3GPP TSG RAN WG1 Meeting #88, Athens, Greece, Feb. 13-17, 2017, Source: Sony, Title: Wake Up Radio for NR. [cited by applicant]
R1-1704282 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Huawei, HiSilicon, Title: Considerations on ‘wake-up signal’ for eFeMTC. [cited by applicant]
R1-1704290 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Huawei, HiSilicon, Title: On ‘wake-up signal’ for paging and connected-mode DRX. [cited by applicant]
R1-1704531 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: CATT, Title: UE Wakeup Mechanism and On-Demand Access for efeMTC UE Power Saving. [cited by applicant]
R1-1704532 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: CATT, Title: UE Wakeup Mechanism and On-Demand Access for fNB-IoT UE Power Saving. [cited by applicant]
R1-1704693 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Intel Corporation, Title: DL Power Consumption Reduction for efeMTC. [cited by applicant]
R1-1704698 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Intel Corporation, Title: DL Power Consumption Reduction for feNB-IoT. [cited by applicant]
R1-1704845 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: LG Electronics, Title: UE power consumption reduction by new physical channel in MTC. [cited by applicant]
R1-1704847 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: LG Electronics, Title: UE power consumption reduction by new physical channel in NB-IoT. [cited by applicant]
R1-1705012 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Qualcomm Incorporated, Title: Efficient monitoring of DL control channels. [cited by applicant]
R1-1705017 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Qualcomm Incorporated, Title: Efficient monitoring of DL control channels. [cited by applicant]
R1-1705038 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: Signalling for efficient decoding of physical channels. [cited by applicant]
R1-1705043 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: Signalling for efficient decoding of physical channels. [cited by applicant]
R1-1705182 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Ericsson, Title: Power consumption reduction for paging and connected-mode DRX. [cited by applicant]
R1-1705192 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Ericsson, Title: Power consumption reduction for paging and connected-mode DRX. [cited by applicant]
R1-1705204 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: SONY, Title: MTC UE Power Consumption Reduction in Idle Mode Paging. [cited by applicant]
R1-1705305 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Samsung, Title: Power consumption reduction for paging and connected-mode DRX for eMTC. [cited by applicant]
R1-1705309 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: Samsung, Title: Power consumption reduction for paging and connected-mode DRX for NB-IOT. [cited by applicant]
R1-1705494 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: ZTE, ZTE Microelectronics, Title: Power consumption reduction for physical channels for MTC. [cited by applicant]
R1-1705495 3GPP TSG RAN WG1 Meeting #88bis, Spokane, USA, Apr. 3-7, 2017, Source: ZTE, ZTE Microelectronics, Title: Power consumption reduction for physical channels for NB-IoT. [cited by applicant]
R1-1706882 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Ericsson, Title: Downlink channel power efficiency for MTC. [cited by applicant]
R1-1707018 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Huawei, HiSilicon, Title: On ‘wake-up signal’ for eFeMTC. [cited by applicant]
R1-1707101 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: ZTE, Title: Power consumption reduction for physical channels for MTC. [cited by applicant]
R1-1707315 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Intel Corporation, Title: Analysis of impact of Wake-up signaling on power consumption and resource efficiency for efeMTC. [cited by applicant]
R1-1707455 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: CATT, Title: UE Wakeup Mechanism and On-Demand Access for efeMTC UE Power Saving. [cited by applicant]
R1-1707568 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: LG Electronics, Title: UE power consumption reduction by new physical signal/channel in MTC. [cited by applicant]
R1-1707862 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Nokia, Alcatel-Lucent Shanghai Bell, Title: Signalling for efficient decoding of physical channels. [cited by applicant]
R1-1708311 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Sierra Wireless, Title: Sldle Mode Power Efficiency Reduction. [cited by applicant]
R1-1708796 3GPP TSG RAN WG1 Meeting #89, Hangzhou, P.R. China, May 15-19, 2017, Source: Qualcomm Incorporated, Title: Efficient monitoring of DL control channels. [cited by applicant]
R1-1712106 3GPP TSG RAN WG1 Meeting #90, Prague, Czech Republic, Aug. 21-25, 2017, Source: Huawei, HiSilicon, Title: On power-saving signal for eFeMTC. [cited by applicant]
R1-1804405 3GPP TSG RAN WG1 Meeting #92, Sanya, China, Apr. 16-20, 2018, Source: Samsung, Title: Potential physical layer procedures for NR-U. [cited by applicant]
R1-1808272 3GPP TSG RAN WG1 Meeting #94, Gothenburg, Sweden, Aug. 20-24, 2018, Source: MediaTek Inc., Title: On downlink transmission detection in NR-U. [cited by applicant]
R1-1808319 3GPP TSG RAN WG1 Meeting #94, Gothenburg, Sweden, Aug. 20-24, 2018, Source: ZTE, Title: Considerations on DL reference signals and channels design for NR-U. [cited by applicant]
R2-1814940 3GPP TSG RAN WG2 Meeting #103bis, Chengdu, China, Oct. 8-12, 2018, Source: Nokia, Nokia Shanghai Bell, Title: Correction to preamble power ramping. [cited by applicant]
R2-1815281 3GPP TSG RAN WG2 Meeting #103bis, Chengdu, China, Oct. 8-12, 2018, Source: LG Electronics Inc., Title: Remaining issue with Power Ramping Counter. [cited by applicant]
RP-181463 3GPP TSG RAN Meeting #80, La Jolla, USA, Jun. 11-14, 2018, Source: CATT, CMCC, vivo, CATR, Qualcomm, MediaTek, Title: New SID: Study on UE Power Saving in NR. [cited by applicant]
R1-1709016 3GPP TSG RAN WG1 Meeting #89, Hangzhou, China, May 15-19, 2017, Source: InterDigital Inc., Title: Control Channels Monitoring with Multiple CORESETs. [cited by applicant]
R1-1714117 3GPP TSG RAN WG1 Meeting #90, Prague, Czech Republic, Aug. 21-25, 2017, Source: InterDigital Inc., Title: Remaining details of BWP. [cited by applicant]
R2-1802001 3GPP TSG RAN WG2 Meeting #101, Athens, Greece, Feb. 26-Mar. 2, 2018, Source: vivo, Title: Restart Scell inactive timer due to configuration grant. [cited by applicant]
R1-142925 3GPP TSG RAN WG1 Meeting #78, Dresden, Germany, Aug. 18-22, 2014, Source: Fujitsu, Title: Discussion of on/off transitions and related procedures. [cited by applicant]
Oct. 18, 2019—European Extended Search Report—EP 19187310.8. [cited by applicant]
Jan. 17, 2020—European Extended Search Report—EP 19198650.4. [cited by applicant]
Apr. 22, 2021—European Search Report—EP 19198650.4. [cited by applicant]
Apr. 29, 2022—European Office Action—EP 19198650.4. [cited by applicant]
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US 12,671,486