Journal of Modern Power Systems and Clean Energy

ISSN 2196-5625 CN 32-1884/TK

Optimal configuration of distributed power flow controller to enhance system loadability via mixed integer linear programming
Author:
Affiliation:

1 College of Electrical Engineering, Southeast University, Nanjing 210096, China 2 China EPSI Science & Technology Company, Beijing 102200, China 3 State Grid Jiangsu Electric Power Company Research Institute, Nanjing 211100, China

Fund Project:

This work was supported in part by the National Natural Science Foundation of China (No. 51577030) and in part by the project of State Grid Corporation of China (Research on flexible AC power flow control technology of transmission network based on a distributed power flow controller) (No. 8516000700).

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    Abstract:

    Increasing energy consumption has caused power systems to operate close to the limit of their capacity. The distributed power flow controller (DPFC), as a new member of distributed flexible AC transmission systems, is introduced to remove this barrier. This paper proposes an optimal DPFC configuration method to enhance system loadability considering economic performance based on mixed integer linear programming. The conflicting behavior of system loadability and DPFC investment is analyzed and optimal solutions are calculated. Thereafter, the fuzzy decision-making method is implemented for determining the most preferred solution. In the most preferred solution obtained, the investment of DPFCs is minimized to find the optimal number, locations and set points. Simulation results on the IEEERTS79 system demonstrate that the proposed method is effective and reasonable.

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  • Received:
  • Revised:
  • Adopted:
  • Online: November 27,2019
  • Published: