EP2005202A2

Systems and methods for performing automatic real-time harmonics analyses for use in real-time power analytics of an electrical power distribution system

Abstract

This record has no abstract on file.

EP2005202A2, drawing sheet 1
Sheet 1 of 3

Term

Projected expiry 12 April 2027.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

113 claims: 8 independent, 105 dependent

  1. 1
    Claims of equivalent WO 2007121322 A2 What is claimed is:CLAIMS 1. A system for performing real-time harmonics analysis of an electrical system, comprising: a data acquisition component communicatively connected to a sensor configured to acquire real-time data output from the electrical system;a power analytics server communicatively connected to the data acquisition component, comprising, a virtual system modeling engine configured to generate predicted data output for the electrical system utilizing a virtual system model of the electrical system, an analytics engine configured to monitor the real-time data output and the predicted data output of the electrical system, the analytics engine further configured to initiate a calibration and synchronization operation to update the virtual system model when a difference between the real-time data output and the predicted data output exceeds a threshold, and a machine learning engine configured to store and process patterns observed from the real-time data output and the predicted data output, the machine learning engine further configured to forecast harmonic distortions in the electrical system subjected to a contingency event;and a client terminal communicatively connected to the power analytics server, the client terminal configured to allow for the selection of the contingency event and display a report of the forecasted harmonic distortions.
  2. 24
    A method for performing real-time harmonics analysis of an electrical system subjected to a contingency event, comprising:updating a virtual system model of the electrical system in response to real-time data, wherein the virtual system model includes harmonic frequency modeling data for components comprising the electrical system;choosing a contingency event to simulate;determining voltage and current harmonics generated within the electrical system by running an analysis of the updated virtual system model operating under conditions simulating the contingency event chosen;and generating a report that forecasts voltage and current harmonics in the electrical system.
  3. 45
    A system for performing real-time failure mode analysis of a monitored system, comprising:a data acquisition component communicatively connected to a sensor configured to acquire real-time data output from the monitored system;an analytics server communicatively connected to the data acquisition component, comprising, a virtual system modeling engine configured to generate predicted data output for the monitored system utilizing a virtual system model of the monitored system, an analytics engine configured to monitor the real-time data output and the predicted data output of the monitored system, the analytics engine further configured to initiate a calibration and synchronization operation to update the virtual system model when a difference between the real-time data output and the predicted data output exceeds a threshold, and a machine learning engine configured to store and process patterns observed from the real-time data output and the predicted data output, the machine learning engine further configured to forecast an aspect of the monitored system subjected to a simulated contingency event;and a client terminal communicatively connected to the analytics server, the client terminal configured to allow for the selection of the simulated contingency event and display the forecasted aspect.
  4. 60
    A method for determining in real-time the operational stability of an electrical system subjected to a contingency event, comprising:updating a virtual system model of the electrical system in response to realtime data, wherein the virtual system model includes real-time domain model data for components comprising the electrical system;choosing the contingency event to simulate;determining the operational stability of the electrical system by running an analysis of the updated virtual system model operating under conditions simulating the contingency event chosen;and generating a report that forecasts the operational stability of the electrical system subjected to the chosen contingency event.
  5. 83
    A method for making real-time predictions about an alternating current arc flash event generated by a protective device interfaced with an electrical system, comprising:updating a virtual system model of the electrical system in response to realtime data;simulating the arc flash event using the virtual system model;calculating a quantity of energy released by the arc flash event using results from the simulation;and generating a report that summarizes results of the simulation.
  6. 90
    A method for determining in real-time the operational reliability of an electrical system subjected to a contingency event, comprising:updating a virtual system model of the electrical system in response to realtime data;receiving real-time system reliability data for the electrical system;choosing the contingency event to simulate;determining the operational reliability of the electrical system by running an analysis of the updated virtual system model operating under conditions simulating the contingency event chosen;and generating a report that forecasts the operational reliability of the electrical system subjected to the chosen contingency event.
  7. 103
    A system for conducting a real-time power capacity assessment of an electrical system, comprising:a data acquisition component communicatively connected to a sensor configured to acquire real-time data output from the electrical system;a power analytics server communicatively connected to the data acquisition component, comprising, a virtual system modeling engine configured to generate predicted data output for the electrical system utilizing a virtual system model of the electrical system, an analytics engine configured to monitor the real-time data output and the predicted data output of the electrical system, the analytics engine further configured to initiate a calibration and synchronization operation to update the virtual system model when a difference between the real-time data output and the predicted data output exceeds a threshold, and a machine learning engine configured to store and process patterns observed from the real-time data output and the predicted data output, the machine learning engine further configured to forecast power capacity of the electrical system subjected to a contingency event;and a client terminal communicatively connected to the power analytics server, the client terminal configured to allow for the selection of the contingency event and display a report of the forecasted power capacity. 108 SDODMS 1/674728 1
  8. 113
    114 SDODMS 1/674728 1