Patents by Inventor Scott Francis Migaldi

Scott Francis Migaldi has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11552725
    Abstract: A base station can select orthogonal frequency-division multiplexing (OFDM) numerologies that define subcarrier spacing values based on attributes associated with one or more services that a user equipment (UE) is using. The base station can use the selected OFDM numerologies for transmission associated with the services. When the UE is using multiple services simultaneously, the base station can select the same or different OFDM numerologies for the multiple services.
    Type: Grant
    Filed: December 3, 2020
    Date of Patent: January 10, 2023
    Assignee: T-Mobile USA, Inc.
    Inventors: Shuqing Xing, Scott Francis Migaldi, John J. Humbert, Brian Allan Olsen
  • Publication number: 20220394717
    Abstract: An electronic device configured to operate in two frequency bands having significantly different coverage areas receives coordinates associated with a smaller coverage area over a frequency band having a larger coverage area. The coordinates allow the electronic device to only power up the associated radio and search for a base station of the smaller coverage area when the electronic device is in the area described by the coordinates. This allows the electronic device to achieve significant power savings compared to even infrequent random polling to determine when a base station of the smaller coverage area radio system is available.
    Type: Application
    Filed: August 15, 2022
    Publication date: December 8, 2022
    Inventors: John Humbert, Scott Francis Migaldi, Terri L. Brooks, Mark Younge
  • Patent number: 11516752
    Abstract: Systems and methods are described for reducing processing time of messages that are repeatedly received, with increasing frequency, by a device (e.g., user equipment, base station etc.). For example, the systems and methods would have a base station decrease power, possibly to minimum power-out, per policy, if messages beyond the original are received and the time between those messages is decreasing. The decrease in time between messages indicates a more urgent need for the base station to power down. The systems and methods can be adapted for different types of messages (e.g., power-up, power-down, resource request, bandwidth request, service type, call type origination, quality-of-service request, application type, etc.). Each message type is associated with a policy (pre-determined or adaptive) that indicates the default behavior when the method detects a decrease in time between messages.
    Type: Grant
    Filed: March 11, 2021
    Date of Patent: November 29, 2022
    Assignee: T-Mobile USA, Inc.
    Inventors: Scott Francis Migaldi, John Joseph Humbert, IV
  • Publication number: 20220368408
    Abstract: This disclosure describes techniques that enable a Radio Frequency (RF) signal controller and optional digital signal translator to use the existing telecommunication infrastructure of a business or residential establishment to deliver wireless communication services to the business or residential establishment.
    Type: Application
    Filed: May 12, 2021
    Publication date: November 17, 2022
    Inventors: Mark Younge, Jean Trakinat, Scott Francis Migaldi
  • Patent number: 11419117
    Abstract: An electronic device configured to operate in two frequency bands having significantly different coverage areas receives coordinates associated with a smaller coverage area over a frequency band having a larger coverage area. The coordinates allow the electronic device to only power up the associated radio and search for a base station of the smaller coverage area when the electronic device is in the area described by the coordinates. This allows the electronic device to achieve significant power savings compared to even infrequent random polling to determine when a base station of the smaller coverage area radio system is available.
    Type: Grant
    Filed: September 17, 2020
    Date of Patent: August 16, 2022
    Assignee: T-Mobile USA, Inc.
    Inventors: John Humbert, Scott Francis Migaldi, Terri L. Brooks, Mark Younge
  • Publication number: 20220201717
    Abstract: Various systems, methods, and devices relate to determining a delay associated with a device; calculating a guard time based at least in part on the delay; and scheduling a wireless resource to include a downlink interval, an uplink interval, and the guard time between the downlink interval and the uplink interval. By calculating the guard time based at least in part on the delay associated with the device, spectrum efficiency can be enhanced, and latency can be reduced.
    Type: Application
    Filed: March 14, 2022
    Publication date: June 23, 2022
    Inventors: Shuqing Xing, John Humbert, Scott Francis Migaldi, Neng-Tsann Ueng, Brian Allan Olsen
  • Publication number: 20220191651
    Abstract: Systems and methods for registering a location tracking device affixed to an item or other merchandise with a cellular or mobile network provider associated with the purchaser are described herein. In some cases, user equipment in physical proximity to the location tracking device may establish a connection with the location tracking device to facilitate the registration process between the network provider and the location tracking device. Once the registration is complete, the location tracking device may establish a direct connection with the cellular or mobile network of the network provider such that the network provider is able to monitor the location of the location tracking device.
    Type: Application
    Filed: February 28, 2022
    Publication date: June 16, 2022
    Inventors: Jean Cheryl Trakinat, Scott Francis Migaldi, Karri Mikael Kuoppamaki, Mark L. Younge
  • Publication number: 20220116186
    Abstract: Systems, methods, and devices can be utilized to schedule at least one Hybrid Automatic Repeat Request (HARQ) transmission and at least one HARQ feedback message in the same Physical Resource Block (PRB). A HARQ transmission can be scheduled in a mini-slot of the PRB. Accordingly, latencies associated with transmitting and receiving the PRB can be reduced, while the high reliability of HARQ can be retained. Implementations can be applied to 5G technologies such as Ultra Reliable Low Latency Communications (URLLCs) and enhanced Mobile BroadBand (eMBB), as well as other low-latency communications. A method can include determining a location of a device; selecting, based at least in part on the location of the device, a mini-slot size; scheduling, in one or more mini-slots having the mini-slot size in a PRB, a HARQ transmission; and transmitting, to the device, the HARQ transmission in the one or more mini-slots of the PRB.
    Type: Application
    Filed: December 21, 2021
    Publication date: April 14, 2022
    Inventors: Shuqing Xing, Wafik Abdel Shahid, Scott Francis Migaldi
  • Publication number: 20220104193
    Abstract: Determining when to display a Fifth Generation (5G) service indicator is described herein. In an example, a network can compare capabilities supported by a user equipment (UE) with capabilities available to the UE (e.g., in a geographic area of the UE) to determine whether the UE can display the 5G service indicator. In some examples, such capabilities can be determined based at least in part on E-UTRAN New Radio-Dual Connectivity (EN-DC) combinations of frequency bands.
    Type: Application
    Filed: September 30, 2020
    Publication date: March 31, 2022
    Inventors: John J. Humbert, Boris Antsev, Terri L. Brooks, Ming Shan Kwok, Scott Francis Migaldi
  • Publication number: 20220104192
    Abstract: Determining when to display a Fifth Generation (5G) service indicator is described herein. In an example, a user equipment (UE) can compare capabilities supported by the UE with capabilities available to the UE (e.g., in a geographic area of the UE) to determine whether the UE can display the 5G service indicator. In some examples, such capabilities can be determined based at least in part on E-UTRAN New Radio-Dual Connectivity (EN-DC) combinations of frequency bands.
    Type: Application
    Filed: September 30, 2020
    Publication date: March 31, 2022
    Inventors: John J. Humbert, Terri L. Brooks, Ming Shan Kwok, Scott Francis Migaldi, Wafik Abdel Shahid
  • Patent number: 11277854
    Abstract: Various systems, methods, and devices relate to determining a delay associated with a device; calculating a guard time based at least in part on the delay; and scheduling a wireless resource to include a downlink interval, an uplink interval, and the guard time between the downlink interval and the uplink interval. By calculating the guard time based at least in part on the delay associated with the device, spectrum efficiency can be enhanced, and latency can be reduced.
    Type: Grant
    Filed: January 22, 2019
    Date of Patent: March 15, 2022
    Assignee: T-Mobile USA, Inc.
    Inventors: Shuqing Xing, John Humbert, Scott Francis Migaldi, Neng-Tsann Ueng, Brian Allan Olsen
  • Patent number: 11265679
    Abstract: Systems and methods for registering a location tracking device affixed to an item or other merchandise with a cellular or mobile network provider associated with the purchaser are described herein. In some cases, user equipment in physical proximity to the location tracking device may establish a connection with the location tracking device to facilitate the registration process between the network provider and the location tracking device. Once the registration is complete, the location tracking device may establish a direct connection with the cellular or mobile network of the network provider such that the network provider is able to monitor the location of the location tracking device.
    Type: Grant
    Filed: June 23, 2020
    Date of Patent: March 1, 2022
    Assignee: T-Mobile USA, Inc.
    Inventors: Jean Cheryl Trakinat, Scott Francis Migaldi, Karri Mikael Kuoppamaki, Mark L. Younge
  • Publication number: 20220046505
    Abstract: An access network can allocate a bearer for a network service associated with a quality-of-service (QoS) value (QV) and a retention-priority value (RPV), and determine a bearer ID for the service based on the QV, the RPV, and a supplemental priority value (SPV) different from the QV and from the RPV. Upon handover of a terminal, session(s) carried by a bearer allocated by the terminal can be terminated. That bearer can be selected using IDs of the bearers and a comparison function that, given two bearer IDs, determines which respective bearer should be terminated before the other. Upon handover of a terminal to an access network supporting fewer bearers per terminal than the terminal has allocated, a network node can select a bearer based on respective QVs and RPVs of a set of allocated bearers. The network node can deallocate the selected bearer.
    Type: Application
    Filed: August 9, 2021
    Publication date: February 10, 2022
    Inventors: Kun Lu, Boris Antsev, Terri L. Brooks, Egil Gronstad, John Humbert, Alan Denis MacDonald, Salvador Mendoza, Scott Francis Migaldi, Gary Jones, Christopher H. Joul, Jun Liu, Ming Shan Kwok, Karunakalage Viraj Rakitha Silva, Neng-Tsann Ueng
  • Patent number: 11233620
    Abstract: Systems, methods, and devices can be utilized to schedule at least one Hybrid Automatic Repeat Request (HARQ) transmission and at least one HARQ feedback message in the same Physical Resource Block (PRB). A HARQ transmission can be scheduled in a mini-slot of the PRB. Accordingly, latencies associated with transmitting and receiving the PRB can be reduced, while the high reliability of HARQ can be retained. Implementations can be applied to 5G technologies such as Ultra Reliable Low Latency Communications (URLLCs) and enhanced Mobile BroadBand (eMBB), as well as other low-latency communications. A method can include determining a location of a device; selecting, based at least in part on the location of the device, a mini-slot size; scheduling, in one or more mini-slots having the mini-slot size in a PRB, a HARQ transmission; and transmitting, to the device, the HARQ transmission in the one or more mini-slots of the PRB.
    Type: Grant
    Filed: November 30, 2018
    Date of Patent: January 25, 2022
    Assignee: T-Mobile USA, Inc.
    Inventors: Shuqing Xing, Wafik Abdel Shahid, Scott Francis Migaldi
  • Publication number: 20210400437
    Abstract: Systems and methods for registering a location tracking device affixed to an item or other merchandise with a cellular or mobile network provider associated with the purchaser are described herein. In some cases, user equipment in physical proximity to the location tracking device may establish a connection with the location tracking device to facilitate the registration process between the network provider and the location tracking device. Once the registration is complete, the location tracking device may establish a direct connection with the cellular or mobile network of the network provider such that the network provider is able to monitor the location of the location tracking device.
    Type: Application
    Filed: June 23, 2020
    Publication date: December 23, 2021
    Inventors: Jean Cheryl Trakinat, Scott Francis Migaldi, Karri Mikael Kuoppamaki, Mark L. Younge
  • Publication number: 20210392180
    Abstract: A user equipment described herein receives content delivered by a telecommunication network at a first rate. The first rate is a highest rate possible for the telecommunication network. The user equipment then renders the content at a second rate that is lower than the first rate.
    Type: Application
    Filed: June 16, 2020
    Publication date: December 16, 2021
    Inventors: John J. Humbert, Scott Francis Migaldi
  • Publication number: 20210385626
    Abstract: A service type symbol may be presented on a display of a communication device to indicate a type of service supported or unsupported on the communication device over a network to which the communication device is presently connected. The communication device may determine a value of a parameter, may determine, based at least in part on the value of the parameter, a service type symbol from a set of multiple different service type symbols to present on a display of the communication device, and may present the symbol on the display. Service type symbols might include, among others, a video symbol corresponding to a video streaming service, a voice symbol corresponding to a voice calling service, a basic data symbol corresponding to a basic data service.
    Type: Application
    Filed: August 23, 2021
    Publication date: December 9, 2021
    Inventors: John Humbert, Scott Francis Migaldi, Hsin Fu Henry Chiang
  • Publication number: 20210377817
    Abstract: When initiating a Voice-over-IP (VoIP) communication session between an originating device (MO) and a terminating device (MT) on a packet-switched network, network components associated with the MO may encounter a failure when preparing resources for the session, such as a failure to establish a dedicated bearer with the MO. This might typically cause the system to abort the session. Instead, the network components are configured to detect the failure and to initiate a handover to a circuit-switched communication network so that the session may be conducted through the circuit-switched communication network. The failure may be detected by a component of a Long-Term Evolution (LTE) Radio Access Network (RAN) of the network, by a Mobility Management Entity (MME) of the network, or by some other network component. Single Radio Voice Call Continuity (SRVCC) procedures may be used to implement the handover.
    Type: Application
    Filed: May 29, 2020
    Publication date: December 2, 2021
    Inventors: Kun Lu, Alan Denis MacDonald, Egil Gronstad, Hsin-Fu Henry Chiang, A. Karl Corona, Scott Francis Migaldi
  • Publication number: 20210368379
    Abstract: A slice manager associated with a network access point of a telecommunication network can manage combinations of network slices and bandwidth parts for user equipment (UE). The bandwidth parts can have independently set numerologies, such as subcarrier spacing values. The UE can be configured to use one or more active bandwidth parts at a time, such that the slice manager can instruct the UE to use multiple active bandwidth parts simultaneously with respect to the same network slice or multiple network slices.
    Type: Application
    Filed: November 12, 2020
    Publication date: November 25, 2021
    Inventors: Shuqing Xing, Mark L. Younge, Scott Francis Migaldi
  • Patent number: 11133909
    Abstract: Systems, methods, and devices can be utilized to schedule at least one Hybrid Automatic Repeat Request (HARQ) transmission and at least one HARQ feedback message in the same Physical Resource Block (PRB). A HARQ transmission can be scheduled in a mini-slot of the PRB. Accordingly, latencies associated with transmitting and receiving the PRB can be reduced, while the high reliability of HARQ can be retained. Implementations can be applied to 5G technologies such as Ultra Reliable Low Latency Communications (URLLCs) and enhanced Mobile BroadBand (eMBB), as well as other low-latency communications. A method can include detecting a fading condition of a device; scheduling, in one or more mini-slots of a PRB, a HARQ transmission based at least in part on the fading condition; and transmitting, to the device, the HARQ transmission in the one or more mini-slots of the PRB.
    Type: Grant
    Filed: November 30, 2018
    Date of Patent: September 28, 2021
    Assignee: T-Mobile USA, Inc.
    Inventors: Shuqing Xing, Wafik Abdel Shahid, Scott Francis Migaldi