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Methods for delivering network slices to a user

專利號
US11997535B2
公開日期
2024-05-28
申請人
T-Mobile Innovations LLC(US KS Overland Park)
發(fā)明人
Lyle W. Paczkowski; William M. Parsel
IPC分類
H04W28/06
技術領域
slice,network,artifact,114a,ue,segment,may,slices,filename,106a
地域: KS KS Overland Park

摘要

A method for delivering a network slice to a user is disclosed. The method includes receiving communication from a network slice artifact comprising a multi-segment filename that includes a first segment comprising instructions for executing the network slice artifact, and a second segment comprising an identity of a network slice instantiable by the network slice artifact. The method also includes retrieving a set of executable instructions associated with the network slice from a data store of the network in response to receiving the communication from the network slice artifact, and communicating the set of executable instructions to the network slice artifact whereby the network slice artifact instantiates the network slice transforming the computer system into an endpoint node of the network slice. The method further includes completing the instantiation of the network slice in response to receiving the communication from the network slice artifact.

說明書

In accordance with the RAT, each access node 304 could provide service on one or more radio-frequency (RF) carriers, each of which could be frequency division duplex (FDD), with separate frequency channels for downlink and uplink communication, or time division duplex (TDD), with a single frequency channel multiplexed over time between downlink and uplink use. Each such frequency channel could be defined as a specific range of frequency (e.g., in radio-frequency (RF) spectrum) having a bandwidth and a center frequency and thus extending from a low-end frequency to a high-end frequency. Further, on the downlink and uplink channels, the coverage of each access node 304 could define an air interface configured in a specific manner to define physical resources for carrying information wirelessly between the access node 304 and UEs 302.

Without limitation, for instance, the air interface could be divided over time into frames, subframes, and symbol time segments, and over frequency into subcarriers that could be modulated to carry data. The example air interface could thus define an array of time-frequency resource elements each being at a respective symbol time segment and subcarrier, and the subcarrier of each resource element could be modulated to carry data. Further, in each subframe or other transmission time interval (TTI), the resource elements on the downlink and uplink could be grouped to define physical resource blocks (PRBs) that the access node could allocate as needed to carry data between the access node and served UEs 302.

權利要求

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