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OLTC를 활용한 도시철도 최대전력 감축에 관한 연구

The study on Reduction of Demand Power in Urban Railway using OLTC

  • 투고 : 2016.09.19
  • 심사 : 2016.10.24
  • 발행 : 2016.10.31

초록

논문에서는 도시철도의 변전소의 최대수요전력을 줄이기 위한 새로운 방법으로 OLTC(:On Load Tap Changer)를 갖는 변압기의 사용을 제안한다. 국내의 대부분의 도시철도는 전동차에 필요한 전력을 다이오드 방식으로 정류하며 DC 1500[V]로 공급한다. 변전소가 병렬로 연결되어 있기 때문에 수전전압이 상승하면 정류기 전압도 상승하게 되고 변전소의 최대전력도 증가하게 된다. 시뮬레이션 결과를 통해 본 논문에서 제안하는 방법이 최대수요전력의 증가를 상당히 제한할 수 있음을 보인다.

This paper proposes a new method reducing the maximum demand power of substations at urban railway by using transformer with OLTC(:On Load Tap Changer). Most of the domestic urban railway is rectified by a diode scheme, and supplies the electric vehicles in dc 1500[v]. Because the substations are connected in parallel, if an input voltage of a substation is increased, then the voltage of rectifiers is also increased, and which leads to an increase in the maximum demand of the substation. Simulation results show that increment of maximum demand power can significantly be limited using the method proposed in this paper.

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참고문헌

  1. J. Choi and H. Yun, "A Comparative Analysis on the Operating System of Urban Railway & Conventional.High speed Railway," J. of the Korea Institute of Electronic Communication Sciences, vol. 10, no. 8, 2015, pp. 953-958. https://doi.org/10.13067/JKIECS.2015.10.8.953
  2. M. Steiner, M. Klohr, and S. Pagiela, "Energy storage system with ultracaps on board of railway vehicles" Conf. of the Power Electronics and Applications on IEEE, Aalborg, Denmark, Sept., 2007.
  3. Y. Ko, "A Study on the Superconductivity Energy Storage Basic Technology," J. of the Korea Institute of Electronic Communication Sciences, vol. 10, no. 6, 2015, pp. 691-698. https://doi.org/10.13067/JKIECS.2015.10.6.691
  4. Y. Ko, "A Study on the Application Cases Analysis of ESS(Energy Storage System) to Electric Power System," J. of the Korea Institute of Electronic Communication Sciences, vol. 11, no. 1, 2016, pp. 53-58. https://doi.org/10.13067/JKIECS.2016.11.1.53
  5. H. Kim and O. Kwon, "Peak Power Optimization for Metro Railway using by Source Impedance Control," Trans. of the Korean Institute of Electrical Engineers, vol. 63, no. 6, 2014, pp. 841-849. https://doi.org/10.5370/KIEE.2014.63.6.841
  6. C. Hn, "A Study on Effects of Energy Saving by Applying Energy Storage System," J. of the Korean Society for Railway, vol. 12, no. 4, 2009, pp. 582-589.
  7. K. Kim and S. Oh, "A model and approaches for smoothing peaks of traction energy in time tabling," J. of the Korean Society for Railway, vol. 12, no. 6, 2009, pp. 1018-1023.
  8. S. Ge and T. Chung, "Optimal active power flow incorporating power flow control needs in flexible AC transmission systems," IEEE Trans. Power Systems, vol. 14, no 2, 1999, pp. 738-744. https://doi.org/10.1109/59.761906
  9. K. Muttaqi, A. Le, M. Negnevitsky, and G. Ledwich, "A coordinated voltage control approach for coordination of OLTC, voltage regulator, and DG to regulate voltage in a distribution feeder," IEEE Trans. Industry Applications, vol. 51, no. 2, 2015, pp. 1239-1248. https://doi.org/10.1109/TIA.2014.2354738
  10. Y. Cai, M. Irving, and S. Case, "Iterative techniques for the solution of complex DC-rail-traction systems including regenerative braking," IEE Proc. Generation, Transmission and Distribution, vol. 142, no. 5, 1995, pp. 445-452. https://doi.org/10.1049/ip-gtd:19952098