Journal of Electrical Engineering ›› 2020, Vol. 15 ›› Issue (4): 138-143.doi: 10.11985/2020.04.017

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Reliability Analysis of Different Modes of Distributed Multi-power Open Loop Wiring

LI Xiang1(), WANG Baowei2(), OUYANG Weinian1, YU Xiang2   

  1. 1. Foshan Power Supply, Guangdong Power Grid Corporation, Foshan 528000
    2. Creative Distribution Automation Co., Ltd., Beijing 100193
  • Received:2020-03-24 Revised:2020-07-24 Online:2020-12-25 Published:2020-12-25

Abstract:

In order to coordinate the configuration capacity effectively in the power grid, the reliability of different modes of distributed multi-power source open-loop wiring is studied. The multi-power sliding mode controller is used to coordinate the current ratio between the distributed torques, and then the open-loop curvature of the motor structure is calculated. All the distributed nodes in the distribution network environment are reconstructed, and the specific value of the number of open-loop feeders is calculated according to the multi-stage optimization criteria, and the planning and connection mode design of the double-layer distribution network is completed. The experimental results show that the design of this mode has strong adaptability to power grid dispatching. Compared with the “one word” open-loop connection method, the grid capacity after applying the step-by-step two-phase hybrid connection mode is more than 100 TW·h. After the application of the double-layer distribution network planning and connection mode, the conductivity rate of the power grid can reach 90%, and the configuration capacity in the grid environment is properly coordinated, and the application reliability of distributed multi generation appears an obvious upward trend.

Key words: Distributed power source, motor curvature, distribution network reconfiguration

CLC Number: