Abstract:
A communication device and method for offloading one or more communications from a communication network to one or more other communication networks. The offloading can be controlled by one or more service providers that instruct the communication device to perform the handoff of communications. For example, the one or more service providers can generate one or more commands that instruct the communications device to scan for one or more networks, identify one or more networks, analyze one or more of the identified networks, generate one or more reports based on the analysis, and/or provide the generated reports to the service provider(s).
Abstract:
A mobile communication method according to the present invention includes the steps of: (A) transmitting, from a mobile station (UE) to a radio base station (eNB), a “Measurement Report” including a measurement result of a “MeasObject”, when the mobile station (UE) links and manages a “MeasID”, the “MeasObject”, and a “ReportConfig”, and when the mobile station (UE) determines that the “ReportConfig” is satisfied; and (B) determining, at the mobile station (UE), whether or not to release the “MeasID” according to a type of a carrier designated by the “MeasObject”, when a change has occurred in a combination of the primary carrier and the secondary carriers.
Abstract:
A mobile communication method according to the present invention includes: a step in which a mobile station UE transmits “Measurement Report” including identification information “ECGI” on a cell subordinate to a radio base station eNB, to a radio base station HeNB; a step in which a radio base station HeNB transmits “(X2) HO Request” including the identification information “ECGI” of the cell subordinate to the radio base station eNB, to an IP address of a gateway device HeNB-GW; and a step in which the gateway device HeNB-GW transfers the “(X2) HO Request” to the IP address corresponding to the identification information “ECGI” on the cell subordinate to the radio base station eNB.
Abstract:
A method and apparatus are disclosed for modifying measurement configuration in a Long Term Evolution (LTE) system. An Evolved NodeB (eNB) configures measurement configuration information of User Equipment (UE). If the measurement configuration information corresponding to a measurement identity of the UE is modified, indicating the UE to remove all of original measurement object information and report configuration information corresponding to the measurement identity at first, and then to add modified measurement object information and report configuration information corresponding to the measurement identity. The method and apparatus save the memory capacity of the eNB, and simplify the processing flow of the eNB, and also simplify the processing flow of the UE at the same time.
Abstract:
A method, apparatus, and computer program product are provided for inter-radio access technology carrier aggregation mobility enhancement. The apparatus receives a mobility reporting parameter from a first network node. The apparatus measures parameters of signals received from the first network node and one or more second network nodes based on the measurement reporting parameters. The apparatus generates a measurement report based on the measurement reporting parameters and the measured parameters of the signals, transmits the measurement report to the first network node, and receives a mobility parameter from the first network node based on the measurement report. The measurement reporting parameters include report configuration information for configuring the measurement report based on measured parameters obtained for designated signals received from the first network node and for signals received from the one or more second network nodes.
Abstract:
The present invention provides for a mobile radio communications device arranged for communication by way of a mobile radio communications network, and by way of one of a plurality of frequencies, the mobile radio communications device having control means arranged to allow for a period of inter-frequency measurement within the device, wherein the mobile radio communication device is arranged to determine the said period of inter-frequency measurement in a manner responsive to higher layer events within the mobile radio communications device and which higher layer events can comprise application layer events.
Abstract:
A performed by a first node (111). The method is for handling wireless devices (130). The first node (111) operates in a communications network (100). The first node (111) determines (202) whether or not a second network node (112) comprised in the communications network (100) accepts to serve wireless devices (130) of a first type. The first node (111) then performs (203) a first action based on a result of the determination. In a method performed by the second network node (112), the second network node (112) sends (301) an indication to the first network node (111). The indication indicates whether or not the second network node (112) accepts to serve the wireless devices (130) of the first type. A first wireless device (131) operating in a communications network (100), sends (401) the indication to the first network node (111). The indication indicates whether the second network node (112) accepts to serve the wireless devices (130).
Abstract:
Performing a UE-triggered lower layer-based handover may include performing measurements of source gNB CSI-RS samples associated with a source gNB. Measurements of target gNB CSI-RS samples associated with a target gNB may be performed, wherein the CSI-RS samples associated with the source gNB and the CSI-RS samples associated with the target gNB are transmitted in a burst structure. A subset of the source gNB CSI-RS samples and the target gNB CSI-RS samples may be filtered using a layer 1 or a layer 2 filter. A filtered result for each of the subset of source gNB CSI-RS samples and the subset of target gNB CSI-RS samples may be generated. Based on the generated filtered result for each of the subset of source gNB CSI-RS samples and the subset of target gNB CSI-RS samples, determining whether a handover from the source gNB to the target gNB is to occur.
Abstract:
In an aspect, a UE obtains information (e.g., UE-specific information) associated with a set of triggering criteria (e.g., from a server, a serving network, e.g., in conjunction with or separate from a set of neural network functions) for a set of neural network functions, the set of neural network functions configured to facilitate positioning measurement feature processing at the UE, the set of neural network functions being generated dynamically based on machine-learning associated with one or more historical measurement procedures. The UE obtains positioning measurement data associated with a location of the UE, and processes the positioning measurement data into a respective set of positioning measurement features based at least in part upon the positioning measurement data and at least one neural network function from the set of neural network functions that is triggered by at least one triggering criterion from the set of triggering criteria.
Abstract:
The present application relates to devices and components including apparatus, systems, and methods to perform cell reselection. In an example, timing requirements for synchronization signal processing are defined based on a beam sweeping capability of the device. Synchronization signals are received and processed according to the timing requirements to complete a cell reselection procedure. In another example, location data of the device is used to look up a database of cell identifiers. A cell identifier is determined based on the look-up and a cell reselection procedure is performed using the cell identifier.