会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SYSTEM AND METHOD FOR MONITORING AN OPERATING CONDITION OF AN ELECTRICAL DEVICE WHEN IN OPERATION
    • WO2019158751A1
    • 2019-08-22
    • PCT/EP2019/053964
    • 2019-02-18
    • FARADAY PREDICTIVE LIMITED
    • BATES, ANDREWBOULTON, WilliamBANNISTER, MylesALFEIRAN, BranWALKER, Geoffrey
    • G01R23/20G01R23/16G01R31/34H02H3/52H02H7/08
    • Disclosed is an electrical condition monitoring system that is connectable to an electrical device for monitoring the electrical device when in operation, wherein: (i) the electrical condition monitoring system includes (a) a sensing arrangement for temporally sensing an electrical supply to and/or from the electrical device and generating corresponding sensed data; (b) a data processing arrangement that is configured to process the sensed data to generate a corresponding temporally-changing Fourier spectrum including signal harmonic components and to process temporal changes in magnitudes and frequencies of the signal harmonic components to generate analysis data; and (ii) a user interface is configured for user entry of input for analyzing the analysis data and the data processing arrangement is configured to analyze the analysis data based on the input to obtain information indicative of operating condition of the electrical device; characterized in that: (iii) the data processing arrangement is operable to: identify at least one local maximum corresponding to a phenomenon on the temporally-changing Fourier spectrum; calculate locations on the temporally-changing Fourier spectrum where the same phenomenon appears to create a family of possible local maxima; identify a significant local maximum from the family of possible local maxima corresponding to the phenomenon and generate the analysis data from a magnitude of the significant local maximum; generate a real-time model of the electrical device based on the analysis data; and compare the real-time model with one or more stored models to generate information indicative of operating condition of the electrical device.
    • 5. 发明申请
    • SYSTEM AND METHOD FOR MONITORING AN OPERATING CONDITION OF AN ELECTRICAL DEVICE WHEN IN OPERATION
    • WO2019158751A4
    • 2019-08-22
    • PCT/EP2019/053964
    • 2019-02-18
    • FARADAY PREDICTIVE LIMITED
    • BATES, ANDREWBOULTON, WilliamBANNISTER, MylesALFEIRAN, BranWALKER, Geoffrey
    • G01R23/20G01R23/16G01R31/34H02H3/52H02H7/08
    • Disclosed is an electrical condition monitoring system that is connectable to an electrical device for monitoring the electrical device when in operation, wherein: (i) the electrical condition monitoring system includes (a) a sensing arrangement for temporally sensing an electrical supply to and/or from the electrical device and generating corresponding sensed data; (b) a data processing arrangement that is configured to process the sensed data to generate a corresponding temporally-changing Fourier spectrum including signal harmonic components and to process temporal changes in magnitudes and frequencies of the signal harmonic components to generate analysis data; and (ii) a user interface is configured for user entry of input for analyzing the analysis data and the data processing arrangement is configured to analyze the analysis data based on the input to obtain information indicative of operating condition of the electrical device; characterized in that: (iii) the data processing arrangement is operable to: identify at least one local maximum corresponding to a phenomenon on the temporally-changing Fourier spectrum; calculate locations on the temporally-changing Fourier spectrum where the same phenomenon appears to create a family of possible local maxima; identify a significant local maximum from the family of possible local maxima corresponding to the phenomenon and generate the analysis data from a magnitude of the significant local maximum; generate a real-time model of the electrical device based on the analysis data; and compare the real-time model with one or more stored models to generate information indicative of operating condition of the electrical device.