Study on the Optimal Location of SMES in Power System

Article Preview

Abstract:

With the development of high temperature superconducting wire and related cryogenic technology, applications of superconducting device in power system has become the new hot spot of power engineering science research. As a perfect union of two revolutionary technologies, superconducting technology and FACTS, Superconducting Magnetic Energy Storage device (SMES) have superior properties and wide application. This article presents methods to selecting installation site of SMES device in the power system.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

565-567

Citation:

Online since:

July 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Aysen Arso, Yilu liu, Paulo.F.Ribeiro. Simulation of the Effects of SMES on FACTS Performance IEEE 2002:505-509.

Google Scholar

[2] Pai M. A. Padiyar K R. Sensitivity Based Selection of Control Parameters for Multi-machine Power Systems. IEEE Trans on Power Apparatus and Systems, 1980, PAS-99:1320-1333

Google Scholar

[3] Martins N, Lima L. Determination of Suitable Locations for Power System Stabilizers and Static VAR Compensators for Damping Electromechanical Oscillations in Large Seale Power Systems IEEE Trans on PWRS, 1990, 5(4):1455-1469.

DOI: 10.1109/59.99400

Google Scholar

[4] Swift F J, Wang H F. Application of the Controllable Series Compensator in Damping Power System oscillations. IEE Proceeding-Generation, Transmission & Distribution, 1996, 143 (4):359-364.

DOI: 10.1049/ip-gtd:19960415

Google Scholar

[5] Okamoto H, Kurita A, Sekine Y. A Method for Identification of Effective Locations of Variable Impedance Apparatus on Enhancement of Steady-State Stability in Large-Scale Power Systems IEEE Trans on PWRS, 1995, 10(3):1401-1407.

DOI: 10.1109/59.466512

Google Scholar

[6] Rouco L, Pagola F L. An Eigen value Sensitivity Approach to Location and Controller Design of Controllable Series Capacitors for Damping Power System Oscillations. IEEE Trans on PWRS, 1997, 12(4):1660-1666.

DOI: 10.1109/59.627873

Google Scholar

[7] Larsen E V, Sanehes-Gasea JJ, Chow J H. Concepts for Design of FACTS Controllers to Damp Power Swings IEEE Trans on PWRS, 1995, 10(2):948-956.

DOI: 10.1109/59.387938

Google Scholar

[8] Jian min Zhao, Atsushi Ishigame, Shunji Kawarnoto, et al. Structural Control of Electric Power Networks for Transient stability. IEEE Trans on PWRS, 1994, 9(3):1575-1581.

DOI: 10.1109/59.336101

Google Scholar

[9] Gu Xiao rong, Xue Yu sheng Quantitative Assessment and Optimization on Location of FACTS Automation of Electric Power Systems, 1999, 23(6):42-44.

Google Scholar

[10] Noroosian M, Andersson G. Damping of Inter-Area and Local Modes by Use of Controllable Components In: WM 267-5 PWRD. 1995.

Google Scholar

[11] Davriu A, Mallet Pet al. Evaluation of FACTS Functionalities within the Planning of the Very High Voltage Transmission Network; the EDF Approach In: IEEE/KTH Stockholm Power Tech Conference. Stockholm (Sweden): 1995.6.

Google Scholar

[12] Pilotto L A S, Ping W Wet al. Determination of Needed FACTS Controllers that Increase Asset Utilization of Power Systems. In: WM 090-1 PWRD. 1996.

Google Scholar

[13] Fujita G, Shirai Get al. Consideration for Installation of Locally Controlled FACTS. Conference of IEEJ 1997.

Google Scholar

[14] Y. Ohsawa, Y. Maruoka, H. Takeno. Determination of installation location of SMES for power system stabilization IEEE International Symposium on Circuits and Systems, May 28-31, 2000, Geneva, Switzerland.

DOI: 10.1109/iscas.2000.858731

Google Scholar

[15] S. Ueda, H. Takeuchi, Y. Ohsawa. Studies on Power System Stabilization by Distributed Allocation of Micro SMES Units Power System Technology, 2002, 2: 1244-1248.

DOI: 10.1109/icpst.2002.1047601

Google Scholar

[16] Yuan-Zhi Li, Kenichi Wada, Yasuharu Ohsawa. Optimal Allocation of Micro SMES Units for Power System Stabilization by Means of Genetic Algorithm, International Conference on Power System Technology, 2006.

DOI: 10.1109/icpst.2006.321527

Google Scholar

[17] Sang. Joong Lee. Location of a Superconducting Device in a Power Grid for System Loss Minimization Using Loss Sensitivity IEEE Transactions on Applied Superconducting, 2007, 17(2): 2351-2354.

DOI: 10.1109/tasc.2007.898435

Google Scholar