Power quality improvement and reactive power compensationusing enhancedsliding mode controllerbased shunt active power filter and static VAR compensator

  • Authors

    • T Rajesh
    • S Rajeswari
    2018-03-19
    https://doi.org/10.14419/ijet.v7i2.8.10518
  • Power Quality, Reactive Power, Sliding Mode Controller, Non-linear load
  • The power quality is the challenging criteria in all equipment’s at all levels comprise industrial sectors and consumer places. Some parameters are very sensitive which may affect and disturb the power quality. These parameters are harmonic current, power compensation and voltage sag. Providing the source without these parameters with efficient power quality is essential. Hence by selecting proper device the power output may reach without any interruption along with linear, non-linear and unbalanced loads. This paper introduces a Sliding Mode Controller (SMC), a very effective controller implemented with Shunt active filter and Static VAR Compensator (SVC) FACTS device which increases the reactive power compensation and suppresses the harmonic to enhance the system performance with high reliability.

  • References

    1. [1] Adil M. Al-Zamiland David A. Torrey, “A Passive Series, Active Shunt Filter for High Power Applicationsâ€, IEEE Transactions on Power Electronics, vol. 16, no. 1, January 2001

      [2] L. H. Tey, P. L. So and Y. C. Chu, “Improvement of Power Quality Using Adaptive Shunt Active Filter†IEEE Transactions on Power Delivery, vol. 20, no. 2, April2005

      [3] PichaiJintakosonwit, Hideaki Fujita and Hirofumi Akagi, “Control and Performance of a Fully-Digital-Controlled Shunt Active Filter for Installation on a Power Distribution System†IEEE Transactions on Power Electronics, vol. 17, no. 1, January 2002

      [4] Hirofumi Akagi, Hideaki Fujita and Keiji Wada, “A Shunt Active Filter Based on Voltage Detection for Harmonic Termination of a Radial Power Distribution Line†IEEE Transactions on Industry Applications, vol. 35, no. 3, May/June 1999

      [5] PichaiJintakosonwit, Hirofumi Akagi, Hideaki Fujita and Satoshi Ogasawara, “Implementation and Performance of Automatic Gain Adjustment in a Shunt Active Filter for Harmonic Damping throughout a Power Distribution System†IEEE Transactions on Power Electronics, vol. 17, no. 3, May 2002

      [6] Hideaki Fujita and Hirofumi Akagi, “Voltage-Regulation Performance of a Shunt Active Filter Intended for Installation on a Power Distribution System†IEEE Transactions on Power Electronics, vol. 22, no. 3, May 2007

      [7] Ambrish Chandra, Bhim Singh, B. N. Singh and Kamal Al-Haddad, “An Improved Control Algorithm of Shunt Active Filter for Voltage Regulation, Harmonic Elimination, Power-Factor Correction, and Balancing of Nonlinear Loads†IEEE Transactions on Power Electronics, vol. 15, no. 3, May 2000

      [8] Ahmed M. Massoud, Stephen J. Finney, Andrew J. Cruden, and Barry W. Williams, “Three-Phase, Three-Wire, Five-Level Cascaded Shunt Active Filter for Power Conditioning, Using Two Different Space Vector Modulation Techniques†IEEE Transactions on Power Delivery, vol. 22, no. 4, October 2007

      [9] ShaikAffijulla and SushilChauhan, “Elimination of Resonant Internal Harmonics in Power Electronic Converters†International Journal of Advances in Engineering Sciences Vol.1, Issue 1, Jan, 2011

      [10] A. A. Valdez, G. Escobar and R. Ortega, “An Adaptive Controller for the Shunt Active Filter Considering a Dynamic Load and the Line Impedance†IEEE Transactions on Control Systems Technology, vol. 17, no. 2, March 2009

      [11] Salman Mohagheghi, Ganesh K. Venayagamoorthy, SatishRajagopalan and Ronald G. Harley, “Hardware Implementation of a Mamdani Fuzzy Logic Controller for a Static Compensator in a Multi machine Power System†IEEE Transactions on Industry Applications, vol. 45, no. 4, pp 1535-1544July/August 2009

      [12] Chien-Hung Liu and Yuan-Yih Hsu, “Design of a Self-Tuning PI Controller for a STATCOM Using Particle Swarm Optimization†IEEE Transactions on Industrial Electronics, vol. 57, no. 2, pp February 2010

      [13] EsmaeilGhahremani and Innocent Kamwa, “Optimal Placement of Multiple-Type FACTS Devices to Maximize Power System Loadability Using a Generic Graphical User Interface†IEEE Transactions on Power Systems, vol. 28, no. 2, pp 764-778 May 2013

      [14] PragtiJyotishi, Proff. Deeparamchandani, “Mitigate Voltage Sag/Swell Condition and Power Quality Improvement in Distribution Line Using D-STATCOM†Int. Journal of Engineering Research and Applications, ISSN: 2248-9622, Vol. 3, Issue 6, Nov-Dec 2013, pp.667-674

      [15] Ying Xiao, Y. H. Song and Y. Z. Sun, “Power Flow Control Approach to Power Systems with Embedded FACTS Devices†IEEE Transactions on Power Systems, vol. 17, no. 4, pp 943-950, November 2002

      [16] Wen Li and Yoichi Hori, “Vibration Suppression Using Single Neuron-Based PI Fuzzy Controller and Fractional-Order Disturbance Observer†IEEE Transactions on Industrial Electronics, vol. 54, no. 1, pp 117-126 February 2007

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  • How to Cite

    Rajesh, T., & Rajeswari, S. (2018). Power quality improvement and reactive power compensationusing enhancedsliding mode controllerbased shunt active power filter and static VAR compensator. International Journal of Engineering & Technology, 7(2.8), 543-549. https://doi.org/10.14419/ijet.v7i2.8.10518