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    • 3. 发明专利
    • Network fault diagnosis
    • GB2594512A
    • 2021-11-03
    • GB202006432
    • 2020-04-30
    • SPATIALBUZZ LTD
    • ANDREW BLAKEMICHAEL SHANNON
    • H04L12/24H04W24/08
    • Diagnosing faults in a utility supply network (e.g. mobile communications network) where performance data indicative of utility supply network performance is received, historical performance data indicative of historical performance of the utility supply network along with a fault associated with the historical performance data is obtained, and faults determined based performance data and historical performance data comparisons. Comparisons may be made using data from portions of the network based on similarity with the portion of the network related to performance data. Performance data may comprise subjective data and objective data. Subjective data may relate to user network perceptions, generated in response to communication from the user regarding network performance, status requests, complaints, feedback, repair subscriptions or call centre calls. Objective data may relate to network performance measurements for users submitting communications regarding network performance and may comprise signal strength, data rates, latency, voice quality, errors, and SINAD. Faults may be determined in response to communications from users in geographic regions exceeding thresholds. Likelihoods that actual faults are determined fault may be based on performance and historical performance data similarities. Artificial intelligence algorithms may modify likelihoods that determined faults are actual faults. Faults occurring in maintenance windows may also be determined.
    • 5. 发明专利
    • Network monitoring system
    • GB2592083A
    • 2021-08-18
    • GB202004450
    • 2020-03-27
    • SPATIALBUZZ LTD
    • ANDREW BLAKEMICHAEL SHANNON
    • H04W24/08H04L12/26H04W24/10
    • A network monitoring system for monitoring performance of a utility supply network, such as a communication network. The system comprises an asynchronous subsystem 119 configured to receive scheduled measurements of network performance characteristics from a plurality of user equipments (UEs) 110 connected to the network, and to store the scheduled measurements in a database 140. The system also comprises a synchronous subsystem 121 configured to receive triggered measurements of network performance characteristics from at least one UE connected to the network, and to store the triggered performance measurements in the database 140. The asynchronous subsystem can assign scheduled measurements to a processing queue, and batch process the measurements. The triggered may be associated with network performance queries. The system may request triggered measurements after receiving a query, for example measurements from UEs within a distance of a querying UE. Measurements may comprise data rates, signal strengths, latency or jitter.
    • 7. 发明专利
    • Power management in relation to network performance measurements
    • GB2573830A
    • 2019-11-20
    • GB201811089
    • 2018-07-05
    • SPATIALBUZZ LTD
    • RYAN DOMINIC SHAWANDREW ROBERT BLAKE
    • H04W52/02G01S19/34H04W24/08H04W24/10
    • A device performs network performance measurements, such as measuring quality of service metrics, on a network with which it communicates wirelessly. To reduce power consumption, the device is inhibited from making measurements in the same location too frequently. The device can infer that its location has changed without directly determining its location, thereby reducing the need to incur the energy cost of activating a location-estimation module such as a GPS receiver. The device can infer its location by comparing a set of one or more pairs of readings (different points in time) of the environment external to the UE. Measurement activity is performed if the difference in readings of a pair satisfies a respective criterion. The set may comprise: an identity of a wireless local area network WLAN or of a transmitter in a cellular radio communications network, a strength of one or more signals received, or a list of WLANs detected. The quality of service metrics may be: the strength of a signal received by the UE from the network (i.e. RSSI); a latency, delay or lag affecting communication between the UE and a point in the network; or a data rate between the UE and the network.