Implementation And Experimental Verification Of A Novel Control Strategy For A Upfc Based Interphase Power Controller

Project Code :TEMAPS106

Abstract

Replacing the Phase Shifting Transformers (PSTs) of Interphase Power Controller (IPC) with a reduced rating dual Unified Power Flow Controller (UPFC) results in a Unified Interphase Power Controller (UIPC) with potential for enhanced performance. However, in most cases, the UPFC is controlled as a Static Phase Shifter (SPS), producing marginal improvements. A control approach that allows the minimization of the power ratings of the series Voltage Source Converters (VSCs) of the UIPC was recently proposed. For that, one has to define four control parameters, as opposed to only two in the SPS-based UIPC. This can be done off-line, by means of an optimization procedure that splits the desired transmission line current among the capacitive and inductive branches of the UIPC. In this paper, a control scheme is presented for the implementation of the novel technique. The current sharing factors obtained from the optimization are stored in a lookup table. The gating signals for the VSCs are generated using Park’s transformation so as to synthesize the optimal UIPC inductive and capacitive branch currents with Proportional Resonant (PR) controllers and Sinusoidal Pulse-Width Modulation (SPWM). The transmission line angle, as well as the magnitude and phase of the desired transmission line current with respect to the voltage at the receiving end voltage, are assumed to be provided by a Transmission System Operator (TSO).

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Block Diagram

Specifications

Software Configuration:

Operating System :  Windows 7/8/10

Application Software :  Matlab/Simulink

Hardware Configuration:

RAM :  8 GB / 4 GB (Min)

Processor :  I3 / I5(Mostly prefer)

Learning Outcomes

  • Introduction to Matlab/Simulink
  • What is EISPACK & LINPACK
  • How to start with MATLAB
  • About Matlab language
  • About tools & libraries
  • Application of Matlab/Simulink
  • About Matlab desktop
  • Features of Matlab/Simulink
  • Basics on Matlab/Simulink
  • Introduction to controllers.
  • Study of PWM techniques.
  • Project Development Skills:
    • Problem analyzing skills
    • Problem solving skills
    • Creativity and imaginary skills
    • Programming skills
    • Deployment
    • Testing skills
    • Debugging skills
    • Project presentation skills
    • Thesis writing skills

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