Method and system for power management based on full RF conditions

    公开(公告)号:US12262315B2

    公开(公告)日:2025-03-25

    申请号:US18504794

    申请日:2023-11-08

    Inventor: Anand Menon

    Abstract: Systems, devices and automated processes are provided for prolonging backup battery power for RF radio operations at a base station, including a radio controller configured to control routing of power from the backup battery; a detection unit for determining whether a source of commercial power is about to or has failed; a control unit located remotely to communicate with an RF radio controller, a server, and router to change a setting of a required level to reduce the power to the cell; a feedback mechanism responsive to the loss of power to crop the input power; an output control unit to reduce the output power from the RF radio; and a battery controller configured to reduce the draw on the UPS since input power requirement are dropped.

    VENDOR ONBOARDING AND PRE-DEPLOYMENT SERVICE TESTING

    公开(公告)号:US20250097741A1

    公开(公告)日:2025-03-20

    申请号:US18468609

    申请日:2023-09-15

    Abstract: Systems and methods for service vendor onboarding and pre-production artifact validation and functional testing are provided. An example method includes receiving, in an automated test control system in connection with a cellular network implemented on a cloud-computing platform, an artifact associated with a service provided by a service vendor, and the service is to be deployed on the cellular network. The method further includes storing the received artifact in an untrusted artifacts database, generating and configuring a first test environment on a first virtual private cloud of the cloud-computing platform, performing validation on the received artifact in the first test environment, in response to a determination that the artifact is validated, performing functional testing on the validated artifact in the first test environment, and in response to a determination that the artifact passes the functional testing, signing the artifact and storing the signed artifact in a repository.

    WIRELESS COMMUNICATION SYSTEMS FOR IDENTIFYING FAULTS

    公开(公告)号:US20250097738A1

    公开(公告)日:2025-03-20

    申请号:US18370757

    申请日:2023-09-20

    Abstract: A method for automatically identifying a fault condition in a wireless network can include receiving, at a trained machine-learning model from multiple subsystems of the wireless network, information associated with multiple alerts triggered across the multiple subsystems, each of the multiple alerts being indicative of a corresponding potential fault condition in one of the multiple subsystems, identifying, by the machine-learning model, a subset of alerts of the multiple alerts, where the subset of alerts represents a set of one or more root fault conditions associated with the multiple alerts triggered across the multiple subsystems, and identifying, by the machine-learning model, one or more remediating actions configured to address the one or more root fault conditions in at least one corresponding subsystem of the multiple subsystems. The machine-learning model is trained using training data that identifies correlation between alerts generated in the multiple subsystems.

    RU/DU SETUP AND CHAINING IN O-RAN

    公开(公告)号:US20250097720A1

    公开(公告)日:2025-03-20

    申请号:US18468518

    申请日:2023-09-15

    Abstract: Various embodiments provide RU/DU/CU chaining in an O-RAN by ZTP operations automatically. The chaining creates a logical gNB for achieving flexibility in the O-RAN. In some embodiments, one or more RUs are chained to a DU in a cell site when the DU is initiated in the O-RAN. In those embodiments, a network management system is employed to store and manage O-RAN configurations to facilitate the RU/DU/CU chaining. In some embodiments, the cell site is customized during the chaining process.

    WIRELESS COMMUNICATION SYSTEMS FOR PREDICTING FAULTS

    公开(公告)号:US20250097094A1

    公开(公告)日:2025-03-20

    申请号:US18370753

    申请日:2023-09-20

    Abstract: A method for predicting a fault condition in a wireless network includes: receiving, at a trained machine-learning model from multiple subsystems of the wireless network, information associated with multiple alerts triggered across the multiple subsystems, each of the multiple alerts being indicative of a corresponding potential fault condition in one of the multiple subsystems, receiving, at the machine-learning model from a plurality of external devices, observation information regarding the wireless network, receiving, at the machine-learning model from a network platform, information regarding resources of the wireless network; training the machine-learning model using the multiple alerts, the observation information, and the information, identifying, by the machine-learning model, a subset of alerts of the multiple alerts, the subset of alerts representing a set of one or more predicted fault conditions associated with the multiple alerts triggered across the multiple subsystems, and training the machine-learning model using the subset of alerts.

    OPTIMAL OR INTELLIGENT SECONDARY CELL SELECTION IN A WIRELESS COMMUNICATIONS O-RAN NETWORK

    公开(公告)号:US20250081050A1

    公开(公告)日:2025-03-06

    申请号:US18459021

    申请日:2023-08-30

    Inventor: Manish Uniyal

    Abstract: A method for selecting a secondary cell in a wireless communication system for carrier aggregation includes providing at least one parameter for each secondary cell in a plurality of secondary cells that indicates a connection priority for each secondary cell and transmitting a set of parameters for each secondary cell to a UE. The set of parameters for each secondary cell includes the parameter indicating a connection priority for the secondary cell. The method further includes receiving a request from the UE to connect with a secondary cell selected based on the parameter indicating a connection priority for the secondary cell, connecting the selected secondary cell to the UE, and transmitting data to the UE using a primary cell and the selected secondary cell.

    INTELLIGENT SIMULTANEOUS CORE
    7.
    发明申请

    公开(公告)号:US20250081039A1

    公开(公告)日:2025-03-06

    申请号:US18460827

    申请日:2023-09-05

    Abstract: An intelligent simultaneous core that provides coordination between private core(s) and public core(s) (i.e., carrier core(s)) to improve network throughput and efficiency is disclosed. Both the private core(s) and the public core(s) may be configured for and facilitate 5G communications. Network procedures and protocols may intelligently divide processing throughput based on factors such as capacity, bit rate, etc. When only a particular data throughput can be supported, for example, a simultaneous core connection can be utilized.

    USE OF CONNECTORS
    9.
    发明申请

    公开(公告)号:US20250071189A1

    公开(公告)日:2025-02-27

    申请号:US18452987

    申请日:2023-08-21

    Abstract: A method may include receiving request data associated with a service, the request data in a first format. The method may also include determining an endpoint of the service and a second format associated with the service. The method may include generating a service request based at least in part on the request data, the service request in the second format. The method may then include providing the service request in the second format to an orchestrator. The method may include transmitting, by the orchestrator, the service request to the endpoint of the service. The method may include receiving, by the orchestrator, response data from the service, the response data based at least in part on the service request. The method may include generating, by the orchestrator, a response based at least in part on the response data. The method may include providing, by orchestrator, the response to the user.

    RESOLVING TN/NTN SPECTRUM OVERLAP BY ASSIGNMENT OF BANDWIDTH PARTS TO GEOGRAPHIC AREAS

    公开(公告)号:US20250070951A1

    公开(公告)日:2025-02-27

    申请号:US18236273

    申请日:2023-08-21

    Abstract: Methods and systems for operating a Non-Terrestrial Network (NTN) within neighboring geographic areas, and where a Terrestrial Network (TN) is also operating in at least one of the areas. A set of two or more candidate Bandwidth Parts (BWPs) are selected for use by the NTN from spectrum allocated for use by the NTN which does not overlap with the channels used by the TN. The two or more BWPs may each specify a contiguous set of frequencies and timeslots. One of the candidate BWPs is assigned for use by the NTN as an active BWP in a first one of the neighboring geographic areas; and one candidate BWPs is also assigned for use by the UEs as an active BWP in a second one of the neighboring geographic areas.

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