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    • 2. 发明专利
    • Improvements in and relating to data analytics in a telecommunication network
    • GB2593979A
    • 2021-10-13
    • GB202103460
    • 2021-03-12
    • SAMSUNG ELECTRONICS CO LTD
    • MEHRDAD SHARIATJUNGSHIN PARK
    • H04L12/24H04W24/00
    • A consumer network function (NF) determines how analytics data from individual sources is collected and analysed in a distributed manner from a plurality of network data analytic Functions (NWDAF); in a centralised manner by aggregating analytics data from a the NWDAFs before analysing at an aggregator NWDAF; or a mixture of both. NWDAFs may have specialised functions which aggregate analytics from areas of interest of target users, and general functions to notify analytics per area of interest of per set of target users. Capability information of NWDAFs relating to network aggregation capabilities may be stored in a network repository function NRF. A NF may determine from which NWDAFs to collect data based on NWDAF capability as part of its selection criteria, where the criteria may comprise newly registered capabilities in NRF, determined based on the load level per NWDAF, analytics IDs supported per NWDAF and Key performance indicators KPIs. An aggregation point identifier AP ID, defined per Aggregator NWDAF, provided as assistance information registered in NRF, may indicate which NWDAFs area able to act as an aggregation point. A NF determines how NWDAFs operate together and based on implemented selection criteria, decides how to collect data from them.
    • 6. 发明专利
    • Improvements in and relating to data analytics in a telecommunication network
    • GB2593217A
    • 2021-09-22
    • GB202004073
    • 2020-03-20
    • SAMSUNG ELECTRONICS CO LTD
    • MEHRDAD SHARIATJUNGSHIN PARK
    • H04L12/24H04W24/00
    • Analytics data from individual sources is collected and analysed in a distributed manner at a plurality of network data analytics functions NWDAF, a centralised manner by aggregating analytics data before analysing it at NWDAF, or a mixture of both. A network function service consumer 100 may send a discovery request to a network repository function NRF 110, including required analytics IDs and an area of interest; the NRF responds with NWDAF instance IDs, NWDAF(k), network analytics IDs, AnalyticsIDs(k) and area of interest identified as TAI(k); the network function service consumer sends a subscription request to each NWDAF(k) 120, which in turn responds with analytics specific parameters per analytics ID; the network function service consumer aggregates the target of analytics reporting across NWDAF(k)s for AnalyticsIDs(k) for corresponding TAI(k). Capability information of NWDAFs may be stored in a network repository function NRF. A consumer network function NF may determine NWDAFs from which to collect data based on implemented selection criteria comprising load per NWDAF analytics ID supported per NWDAF and other key performance indicators. An aggregation point identifier AP ID, which indicates which NWDAFs can act as aggregation points, may be defined per NWDAF.
    • 9. 发明专利
    • Improvements in and relating to failure modes in multi-hop networks
    • GB2573554A
    • 2019-11-13
    • GB201807602
    • 2018-05-10
    • SAMSUNG ELECTRONICS CO LTD
    • MILOS TESANOVICMEHRDAD SHARIAT
    • H04L45/28H04L45/24H04L69/40
    • Route fault recovery in a multi-hop network having a plurality of nodes, defining a route from A to D, A-B-C-D, comprising: determining that a fault exists S30 between two of the plurality of nodes B, C and performing a hierarchical fault recovery process. The hierarchical recovery process may firstly attempt to recover the fault by the node local to the fault, B, using the same set of nodes that make up the existing route, for example, through bearer re-mapping S40 (Figure 1). If unsuccessful the recovery may increment to adding in an adjacent node E to the route to attempt to bypass the fault S60 (Figure 2). If also unsuccessful the recovery may increment to adding in a further non-adjacent node F to attempt bypass S80. If also unsuccessful a full route re-computation may be performed S100 by Central Unit node A to determine a new route to D, A-G-H-D (Figure 4). The route may traverse an Integrated Access and Backhaul (IAB) telecommunications network. The solution may allow a fast bearer reconfiguration to locally resolve a fault by a Distributed Unit B with cached data and attempting local solutions at B before involving Central Unit to attempt full route re-computation.