• DocumentCode
    3574248
  • Title

    A novel control strategy for capacitor voltage regulation of Unified Power Quality Conditioner using Integral plus Sliding Mode Controller

  • Author

    Gadgune, Swapnil Y. ; Waware, Madhukar M.

  • Author_Institution
    Dept. of Electr. Eng., FCOER, Sangola, India
  • fYear
    2014
  • Firstpage
    45
  • Lastpage
    52
  • Abstract
    Increased use of non-linear loads in industries causing voltage and current distortions. Unified Power Quality Conditioner (UPQC) is used at Distribution level to compensate voltage as well as current distortion problems at a time. In order to ensure the better operation of UPQC, the DC-Link capacitor voltage must be maintained constant. Traditional Pi-controller shows overshoot in response. Also, the Sliding Mode Controller (SMC) designed using traditional approach exhibits steady-state error. This offset can be removed by adding a constant in SMC law. But this approach can´t work for UPQC system, when load is change. In this paper, a novel capacitor voltage regulator is proposed using Integral plus Sliding Mode Control technique. The proposed controller has the inherent advantages like has very low Settling Time with no overshoot. This controller completely eliminates steady-state error. The simulation results are given considering various control strategies, shows validation of proposed technique.
  • Keywords
    power capacitors; power supply quality; variable structure systems; voltage control; DC-link capacitor voltage; SMC law; UPQC; capacitor voltage regulation; control strategy; current distortion; distribution level; integral plus sliding mode controller; nonlinear loads; unified power quality conditioner; voltage distortion; Active filters; Capacitors; Equations; Harmonic analysis; Mathematical model; Power harmonic filters; Voltage control; Active Power Filter (APF); Instantaneous Reactive Power Theory (TRP); Synchronous Reference Frame Theory (SRF); Unified Power Quality Conditioner (UPQC);
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Circuit, Power and Computing Technologies (ICCPCT), 2014 International Conference on
  • Print_ISBN
    978-1-4799-2395-3
  • Type

    conf

  • DOI
    10.1109/ICCPCT.2014.7054797
  • Filename
    7054797