• DocumentCode
    1371639
  • Title

    Design of Phase Identification System to Support Three-Phase Loading Balance of Distribution Feeders

  • Author

    Chen, Chao-Shun ; Ku, Te-Tien ; Lin, Chia-Hung

  • Volume
    48
  • Issue
    1
  • fYear
    2012
  • Firstpage
    191
  • Lastpage
    198
  • Abstract
    In this paper, a phase identification system (PIS) is designed to incorporate a fuzzy microprocessor-based controller for phase measurement of underground transformers. The proposed fuzzy calibration algorithm used in the controller aims to solve the offset and gain of frequency deviation of the real-time clock, which was generated by a voltage-controlled crystal oscillator (VCXO) to maintain the timing lock with respect to the 1 pulse per second signal of the global positioning system before phase measurement is executed. According to the field test of the PIS design, the phase deviation of the real-time clock with embedded VCXO can be improved from 46.27° to 0.98° by applying the fuzzy calibration algorithm. The PIS has been applied for field measurement of underground distribution transformers to identify their phases and correct the corresponding attributes of the automated mapping faulty management (AM/FM) system in Taipower. By retrieving the information of the line segments and transformers from the AM/FM, the network modeling of distribution feeders is derived to analyze the three-phase unbalance. The rephasing strategy of laterals and distribution transformers has been derived and executed by Taipower engineers. By comparing the phase currents and neutral current of a test feeder before and after rephasing, the three-phase balance of the distribution system can be significantly enhanced with the PIS to identify the phasing of distribution transformers for deriving the rephasing strategy of the distribution feeders.
  • Keywords
    Global Positioning System; calibration; clocks; fuzzy set theory; microcontrollers; phase measurement; power distribution faults; power engineering computing; power system measurement; power transformers; underground transmission systems; voltage-controlled oscillators; AM-FM system; PIS design; Taipower engineers; automated mapping faulty management; distribution feeder network modeling; embedded VCXO; field measurement; frequency deviation; fuzzy calibration algorithm; fuzzy microprocessor-based controller; global positioning system; phase identification system design; phase measurement; real-time clock; three-phase loading balance support; underground distribution transformers; voltage-controlled crystal oscillator; Calibration; Clocks; Global Positioning System; Oscillators; Phase measurement; Timing; Voltage measurement; Automated mapping faulty management system; global positioning system (GPS); phase identification system (PIS);
  • fLanguage
    English
  • Journal_Title
    Industry Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/TIA.2011.2175352
  • Filename
    6072263