Patent Assignment
Reel/Frame 059044/0022
CHANGE OF NAME
Recorded: 2022-02-11
Received: 2022-02-11
Pages: 58
Assignor
SPRINT SPECTRUM L.P.
Executed: 2021-03-25
Assignee
SPRINT SPECTRUM LLC
12920 SE 38TH ST, BELLEVUE, WA, 98006, UNITED STATES
Covered Applications
(100)
Invoking DRX Mode Based on High-Quality Connection
App. No. 17/643,616
→
Use of Alternate VoIP Call-Placement Service in Response to IMS Processing Failure
App. No. 17/456,294
→
Dynamic Control of Connections with Dual-Connectivity-Capable Devices
App. No. 17/454,505
→
Dynamically Combining Air-Interface Resource Reservations
App. No. 17/450,862
→
Method and System to Facilitate Media-Content Delivery
App. No. 17/448,442
→
Dynamic PDCP Duplication with Bearer Modification, to Help Overcome Reduced Wireless Quality
App. No. 17/448,430
→
Use of Capability Reporting Based on Ping-Ponging as Basis to Facilitate Control of Dual Connectivity
App. No. 17/448,281
→
Use of Power Class as Basis to Control Configuration of MU-MIMO Service
App. No. 17/448,335
→
DEDICATING ANTENNA ELEMENTS TO SPECIFIC WIRELESS DEVICES
App. No. 17/469,013
→
SELECTING BETWEEN MIMO AND CARRIER AGGREGATION
App. No. 17/382,686
→
Use of Network Signaling (NS) Values to Cooperatively Control Spectral Emission and Additional Functionality Such as Uplink/Downlink Subcarrier Shifting
App. No. 17/443,086
→
Dynamically Reassigning a High-Noise Frequency Segment from a First Access Node to a Second Access Node
App. No. 17/305,969
→
Control of Connectivity for a Voice-Capable UE that will be Served by a Node that Does Not Support Voice-Over-Packet Service
App. No. 17/305,026
→
Use of Group Delay Variation as a Basis to Control Configuration of Dual-Connectivity Service
App. No. 17/304,285
→
Use of MU-MIMO Grouping Efficiency as a Basis to Control Configuration of Dual-Connectivity Service
App. No. 17/304,284
→
Use of UE Power Class and Quantity of Access-Node Receive Antennas as Basis to Control Configuration of Dual-Connectivity Service
App. No. 17/304,287
→
Method and System for Concurrently Transmitting Signals
App. No. 17/350,667
→
Dynamic Control of Single-RAT Service Based on Threshold Presence of Dual-RAT-Capable Devices
App. No. 17/302,510
→
Dynamic Carrier Reconfiguration in Response to Predicted Uplink Intermodulation Distortion
App. No. 17/302,340
→
METHOD AND SYSTEM FOR OVERCOMING HANDOVER FAILURES BETWEEN MINI MACROS
App. No. 17/230,103
→
Use of Noise as a Basis to Control Configuration of Narrowband Carrier Within Wideband Carrier
App. No. 17/301,788
→
METHOD AND SYSTEM FOR OPTIMIZING DEVICE RETRY BEHAVIOR
App. No. 17/223,159
→
Suppression of Modulation Order in Response to Uplink Voice Muting
App. No. 17/301,504
→
DYNAMIC RAT ASSIGNMENT FOR DUAL-CAPABLE IOT DEVICES
App. No. 17/206,945
→
Management of Carriers to Help Ensure QoS for Single-Carrier UEs
App. No. 17/206,092
→
USE OF CELL-EDGE FDD COVERAGE TO SEPARATE CELL-CENTER TDD COVERAGE FROM ADJACENT TDD COVERAGE WITH CONFLICTING TDD CONFIGURATION
App. No. 17/204,654
→
SELECTIVELY ASSIGNING UPLINK TRANSMISSION LAYERS
App. No. 17/204,415
→
METHOD AND SYSTEM FOR OPTIMIZING NETWORK RESOURCES
App. No. 17/201,176
→
Dynamic Adjustment of TDD Configuration in Response to Uplink Voice Muting
App. No. 17/249,307
→
Selection of Access Node to Serve a Device, with the Selection Being Based on RRC Connection Establishment Failure History as to At Least One Other Device
App. No. 17/249,262
→
CENTRALIZED NETWORK POLICY CONTROLLER AND METHOD FOR OPERATING
App. No. 17/184,906
→
PROGRAMMABLE NETWORKING DEVICE FOR USER PLANE FUNCTION
App. No. 17/181,615
→
Dynamic Migration of Session Data Between Firewalls to Facilitate Low-Latency Session Continuity
App. No. 17/249,088
→
Dynamic Control of Split-Uplink-Mode Operation to Help Facilitate Resource Availability for UEs Served Without Split Uplink
App. No. 17/249,056
→
DYNAMIC INTELLIGENT ALERT EDGE COMPUTING SYSTEM AND METHOD
App. No. 17/171,231
→
Method And System for Controlling Interference Between Access Nodes Operating on Adjacent TDD Carriers with Different TDD Configurations
App. No. 17/248,800
→
UE-Controlled Selection Between Inter-RAT Handover and Inter-RAT Dual Connectivity
App. No. 17/248,523
→
ASSIGNING COMPONENT CARRIERS FOR RELAY NODES
App. No. 17/126,540
→
Disabling Uplink Leg Switching of Dual-Connected Device in Response to Low Battery Energy and High Rate of Uplink Leg Switching
App. No. 17/247,596
→
Proactive Control of UE Service Based on Quality of an Access Node's RF-Circuitry as to Frequency Bands on which the Access Node Operates in Coverage Zones through which the UE is Predicted to Move
App. No. 17/247,562
→
Controlling Dual Connectivity Based on Inter-Access-Node Flow of User-Plane Communication of Dual-Connectivity Service
App. No. 17/247,563
→
Control of UE Connectivity Including Carrier Transition Before Transition from Standalone Connectivity to Dual Connectivity
App. No. 17/247,519
→
DYNAMIC NODE ASSIGNMENT BASED ON TRANSMISSION POWER CAPABILITY
App. No. 17/118,858
→
DUAL CONNECTIVITY BASED ON PATH LOSS AND TRANSMIT POWER
App. No. 17/119,424
→
Closed Subscriber Group Setup of Shared Base Stations Based on Public Land Mobile Network Configuration
App. No. 17/119,005
→
Method and System for Controlling Interference by Dynamically Adjusting Quantity of Antennas
App. No. 17/247,407
→
Controlling Secondary-Node Addition Based on Cooperative Consideration of Coverage Comparison and Predicted Data Split
App. No. 17/247,413
→
Use of Backhaul Packet-Drop Rate as Basis to Control Transport Block Size for Air-Interface Communication
App. No. 17/247,136
→
Dynamic Control of PRACH Format Based on RRC-Connection-Establishment-Failure History
App. No. 17/247,028
→
Use of Historical Rate of Data Flow as Basis to Limit Quantity of Concurrent Air-Interface Connections
App. No. 16/949,982
→
Method and Apparatus For Selecting A Voice Coding Rate Based On The Air Interface Efficiency Of The Serving Base Station
App. No. 16/953,972
→
Method and Apparatus For Selecting A Voice Coding Rate Based On The Air Interface Efficiency Of The Serving Base Station
App. No. 17/100,304
→
Prediction of Connection Loss as Basis to Control Primary Uplink Path of Dual-Connected Device
App. No. 16/949,857
→
Prediction of Handover Trigger as Basis to Control Primary-Uplink-Path Switching for Dual-Connected Device
App. No. 16/949,854
→
Use of Per-Connection Fading as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,772
→
Use of Per-Connection Insertion Loss as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,774
→
Use of Per-Connection Frequency Bandwidth as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,777
→
Use of Per-Connection MIMO Support as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,776
→
Use of Per-Connection Beamforming Support as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,775
→
Use of Per-Connection Spectral Efficiency as Basis for Dynamic Control of Air-Interface Communication with Dual-Connected Device
App. No. 16/949,770
→
DELAYING HANDOVERS IN 5G EN-DC NETWORKS BASED ON CARRIER AGGREGATION CAPABILITIES
App. No. 17/094,135
→
DELAYING HANDOVERS BASED ON INTERMODULATION DISTORTION
App. No. 17/094,112
→
ENSURING QUALITY OF SERVICE FOR RELAY NODES
App. No. 17/089,310
→
PRIORITIZATION OF RELAY DATA PACKETS
App. No. 17/087,762
→
Controlling Intra-RAT Handover under First RAT Based on Spectral Efficiency Under Second RAT
App. No. 16/949,342
→
Use of an Access Node's Secondary-Node-Addition-Failure History as a Basis to Control whether a UE Will Connect with the Access Node
App. No. 16/949,267
→
USE OF ACCESS-BLOCK HISTORY AS BASIS TO DYNAMICALLY CONTROL MAXIMUM NUMBER OF CONNECTION-REQUEST TRANSMISSIONS PER ACCESS ATTEMPT
App. No. 16/949,273
→
Cooperative Use of Coverage Strength and Insertion Loss as a Basis to Control Whether to Establish Dual Connectivity for a UE
App. No. 16/949,210
→
Use of Fading as Basis to Control Whether to Use Blind Addition or Rather Threshold-Based Addition When Configuring Dual Connectivity
App. No. 17/069,058
→
Dynamically Transitioning a UE to Standalone Connectivity with an Access Node Based on the UE Having Threshold Low Power Headroom on a Secondary Connection with the Access Node
App. No. 17/064,883
→
DYNAMIC HANDOVER TRIGGER BASED ON PRIMARY PATH THROUGHPUT
App. No. 17/065,006
→
LIMITING UPLINK NOISE BY ADJUSTING MIMO TRANSMISSION LAYERS
App. No. 17/064,987
→
Controlling Inter-Access-Node Signaling Rate Based on Inter-Access-Node Communication Load
App. No. 16/948,850
→
LIMITING TRANSMIT POWER IN DENSE HETEROGENEOUS NETWORKS
App. No. 17/060,678
→
Pairing of Access Nodes for Dual-Connectivity Based on Evaluation of Inter-Access-Node Delay
App. No. 16/948,694
→
Controlling Carrier Load Based on Distribution of Secondary UE Connections
App. No. 16/948,705
→
MANAGING SECONDARY NODE AND CHANNEL ASSIGNMENT BASED ON WIRELESS DEVICE CHARACTERISTICS
App. No. 17/029,210
→
Dual-Connectivity Anchor-Carrier Selection Based on Transmission-Mode Support
App. No. 16/948,513
→
ADJUSTING REFERENCE SIGNAL REPORTING BASED ON UPLINK CHANNEL CONDITIONS
App. No. 17/026,857
→
Cooperative Use of Secondary-Node Data Load and UE Data Load as Basis to Control Configuration of Dual Connectivity for UE
App. No. 16/948,398
→
Use of Alternate VoIP Call-Placement Service in Response to IMS Processing Failure
App. No. 16/948,342
→
Dynamic Control of Uplink Communication from a Dual-Connected Device, Based on Antenna Pattern Efficiency Per Connection
App. No. 16/948,109
→
ALLOCATING WIRELESS AIR INTERFACE RESOURCES TO RELAY NODES BASED ON END-USER WIRELESS DEVICE CAPABILITIES
App. No. 17/008,389
→
Dynamic Control of Uplink Communication from a Dual-Connected Device, Based on Uplink Backhaul Congestion Per Connection
App. No. 16/948,060
→
Use of Secondary Radio to Avoid Measurement Gap on Primary Air Interface Connection
App. No. 16/947,976
→
Adaptive Interference Cancellation in a Wireless Communication System
App. No. 16/947,902
→
PORT ASSIGNMENT BASED ON CONGESTION AND WIRELESS DEVICE CHARACTERISTICS
App. No. 16/997,207
→
Serving Cell Selection Based on Backhaul Connection Maximum Bit Rate and Packet-Drop Rate
App. No. 16/947,789
→
SERVING ACCESS NODE SELECTION TO ENSURE UPLINK SERVICE
App. No. 16/992,345
→
MANAGING FREQUENCY BAND ASSIGNMENT BASED ON WIRELESS DEVICE CHARACTERISTICS
App. No. 16/990,484
→
DYNAMIC HANDOVER PARAMETER ADJUSTMENT BASED ON ROUND-TRIP-TIME AT DUAL-CONNECTIVITY ACCESS NODE PAIR
App. No. 16/987,861
→
Use of Uplink Communication Quality as Basis to Control Split-Uplink Operation for Dual-Connectivity Service
App. No. 16/947,524
→
ALLOCATING AIR INTERFACE RESOURCES TO RELAY NODES IN HETEROGENEOUS NETWORKS
App. No. 16/985,730
→
HANDOVER OF WIRELESS DEVICES BASED ON RESOURCE AVAILABILITY
App. No. 16/983,391
→
DYNAMIC HANDOVER PARAMETER ADJUSTMENT BASED ON AMOUNT OF PACKET DROPS AT DUAL-CONNECTIVITY ACCESS NODE PAIR
App. No. 16/944,882
→
Controlling Connectivity of Low-Battery-Energy Device Based on Uplink Noise in Serving Cell
App. No. 16/947,324
→
DONOR SELECTION FOR 5G EN-DC CAPABLE RELAYS
App. No. 16/939,273
→
DYNAMIC CHANNEL STATE INFORMATION REPORTING ADJUSTMENT ON PRIMARY AND SECONDARY PATHS
App. No. 16/939,402
→
Dynamically Accounting for Past Transmit Power as Basis to Set Future Transmit Power on Co-Existing Air Interface
App. No. 16/947,228
→
Dynamically Accounting for Past Transmit Power as Basis to Set Future Transmit Power
App. No. 16/947,229
→