location:Home > 2019 Vol.2 Dec. No.6 > Voltage and Reactive Power Control Algorithm for Distributed Hybrid Energy Storage Structure Based on Big Data Analysis

2019 Vol.2 Dec. No.6

  • Title: Voltage and Reactive Power Control Algorithm for Distributed Hybrid Energy Storage Structure Based on Big Data Analysis
  • Name: Simon Krislstein
  • Company: Nelson Marlborough Institute of Technology
  • Abstract:

    The traditional distributed hybrid energy storage structure has the problems of safety, island operation and capacity blocking. Therefore, based on big data analysis, a voltage and reactive power control algorithm for distributed hybrid energy storage structure is proposed. First, a voltage and reactive power control model is established, and the control of the communication system or manual operation is adopted to achieve automatic operation of the transformer tap or capacitor input capacity. Secondly, use Nash's theorem to calculate the physical quantity obtained by the secondary user under a certain transmission power condition, and obtain the operating data of the power grid based on game theory, and then implement the voltage and reactive power control algorithm. Finally, experiments prove that the distributed reactive energy control algorithm based on big data analysis has certain advantages over the traditional voltage and reactive power control algorithm.

  • Keyword: Active Power; Balanced Nodes; Control Variables; Nash's Theorem;
  • DOI: 10.12250/jpciams2019060628
  • Citation form: Simon Krislstein.Voltage and Reactive Power Control Algorithm for Distributed Hybrid Energy Storage Structure Based on Big Data Analysis[J]. Computer Informatization and Mechanical System, 2019, vol. 2, pp. 129-135.
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Tsuruta Institute of Medical Information Technology
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