ESTABLISHING REPLACEMENT MACROCELL COMMUNICATION LINK AFTER FAILURE

    公开(公告)号:US20250008590A1

    公开(公告)日:2025-01-02

    申请号:US18887014

    申请日:2024-09-16

    Inventor: Zhi Cui Hongyan Lei

    Abstract: Various embodiments disclosed herein provide for reestablishing a backhaul connection due a failed connection. According to some embodiments, a system can comprise detecting a failure in a backhaul communication link between a first node device and a second node device, wherein the second node device is communicatively connected to a core network device of a core network, selecting a new node device, other than the first node device and the second node device, that is communicatively connected to the core network device for establishment of a new backhaul communication link to replace the backhaul communication link, and establishing a connection with the new node device to provide a backhaul communication link failure indication to a controller and to request the controller to provide resources to establish the new backhaul communication link with the new node device.

    APPARATUSES AND METHODS FOR FACILITATING A SELECTION OF RADIO RESOURCES

    公开(公告)号:US20240373451A1

    公开(公告)日:2024-11-07

    申请号:US18775065

    申请日:2024-07-17

    Inventor: Zhi Cui Hongyan Lei

    Abstract: Aspects of the subject disclosure may include, for example, selecting a first network element for providing a first portion of a communication service to a communication device in an uplink direction based on first radio frequency conditions detected by the communication device, and selecting a second network element for providing the first portion of the communication service to the communication device in a downlink direction based on the first radio frequency conditions detected by the communication device, where the second network element is different from the first network element. Other embodiments are disclosed.

    APPARATUSES AND METHODS FOR FACILITATING COMMUNICATION SERVICES VIA CONNECTIONLESS TECHNOLOGY

    公开(公告)号:US20240334276A1

    公开(公告)日:2024-10-03

    申请号:US18738419

    申请日:2024-06-10

    CPC classification number: H04W36/023 H04W36/0016 H04W36/0058 H04W36/0085

    Abstract: Aspects of the disclosure include transmitting first payload data to a first communication device via a first link, subsequent to the transmitting of the first payload data, obtaining a first indication that a handover is being negotiated between the first communication device and a second communication device, based on the first indication, placing, at a processing system, the first link in an inactive state, based on the first indication, storing second payload data in a buffer, and responsive to obtaining a second indication that the second communication device has accepted the handover: activating, at the processing system, a second link between the processing system and the second communication device, obtaining the second payload data from the buffer, and transmitting, based on the activating of the second link, the second payload data obtained from the buffer to the second communication device via the second link. Other aspects are disclosed.

    SERVICE-DRIVEN COORDINATED NETWORK INTELLIGENT CONTROLLER FRAMEWORK

    公开(公告)号:US20240267760A1

    公开(公告)日:2024-08-08

    申请号:US18610968

    申请日:2024-03-20

    CPC classification number: H04W24/02 H04W4/50 H04W48/16

    Abstract: Aspects of the subject disclosure may include, for example generating, by a first Core Intelligent Controller (CIC) comprising a first processing system including a first processor, first data indicative of one or more first control functions that have been carried out by the first CIC, the first CIC being part of a wireless communication system; communicating, by the first CIC to a Service Intelligent Controller (SIC) comprising a second processing system including a second processor, the first data, the SIC being part of the wireless communication system; generating, by a first RAN Intelligent Controller (RIC) comprising a third processing system including a third processor, second data indicative of one or more first radio access functions that have been carried out by the first RIC, the first RIC being part of the wireless communication system; communicating, by the first RIC to the SIC, the second data; generating, by the SIC, third data, the generating of the third data being based at least in part upon the first data, the second, data, or a first combination thereof; communicating, by the SIC to the first CIC, the third data; performing, by the first CIC, one or more second control functions, the one or more second control functions being performed based at least in part upon the third data; generating, by the SIC, fourth data, the generating of the fourth data being based at least in part upon the first data, the second, data, or a second combination thereof; communicating, by the SIC to the first RIC, the fourth data; and performing, by the first RIC, one or more second radio access functions, the one or more second radio access functions being performed based at least in part upon the fourth data. Other embodiments are disclosed.

    FACILITATING NETWORK SLICING INFORMATION PRESERVATION IN ADVANCED NETWORKS

    公开(公告)号:US20240129808A1

    公开(公告)日:2024-04-18

    申请号:US18045875

    申请日:2022-10-12

    CPC classification number: H04W36/0033 H04L41/40

    Abstract: Facilitating network slicing information preservation in advanced networks in advanced networks is provided herein. Operations of a system include receiving, from second network equipment, network slice configuration information for a user device during a first handover of the user device from the second network equipment to the first network equipment. The network slice configuration information can include information indicative of a first network slice and a second network slice generated via a microservice of a network intelligent controller. Further the operations can include transmitting, to third network equipment, the network slice configuration information for the user device during a second handover of the user device from the first network equipment to the third network equipment.

    Predictive vehicle parking systems

    公开(公告)号:US11935409B2

    公开(公告)日:2024-03-19

    申请号:US17513185

    申请日:2021-10-28

    CPC classification number: G08G1/141 G06N5/04 G06Q10/02

    Abstract: A processing system including at least one processor may obtain a parking request for a vehicle to park at a parking facility and may offer a plurality of parking spots of the parking facility for the vehicle, where at least one of the plurality of parking spots that is offered is a parking spot that is predicted to be available, and where the offering includes presenting information regarding predicted adjacent parking spot occupancy of the at least one of the plurality of parking spots for a duration of an intended stay of the vehicle at the parking facility. The processing system may then obtain a selection of a parking spot from among the plurality of parking spots and reserve the parking spot for the vehicle.

    Adaptable Resiliency for a Virtualized RAN Framework

    公开(公告)号:US20240080715A1

    公开(公告)日:2024-03-07

    申请号:US17939793

    申请日:2022-09-07

    CPC classification number: H04W28/0967 H04W28/24 H04W72/06

    Abstract: Adaptable resiliency for a virtualized radio access network (vRAN) framework is disclosed. A resiliency management component can determine vRAN topological adaptations that can reflect resiliency requirements of service instance(s). Accordingly, sufficient redundant vRAN components to satisfy the resiliency requirements can be deployed. However, unlike conventional redundancy techniques that can determine a highest level of redundancy and then apply that relative to all supported services, the disclosed subject matter can avoid over-deploying redundant vRAN components, e.g., redundant components exceeding the resiliency requirement of a service instance, resulting in lowered monetary and non-monetary costs to maintain a vRAN. Moreover, as the services change, the topology of the vRAN can be automatically adapted to purge excessive redundancies, add newly required redundancies, etc., which can facilitate propagating an adequate but lean vRAN topology that is sufficiently resilient.

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