Weak Grid Intertie Wegs With Hybrid Generalized Integrator For Power Quality Improvement

Also Available Domains Wind Power Generation|DC - AC Converters

Project Code :TEMAPS82

Abstract

In this paper proposes a wind energy generating system (WEGS) to provide the required active peak power without high frequency fluctuations even under variable wind speed conditions. The generator speed is adjusted according to the intermittent wind speeds through two voltage source converters (VSCs) connected back to back namely machine side VSC (MSVSC) and utility grid side VSC (UGVSC) across the DC link capacitor. In this work, the hybrid generalized integrator (HGI) control is proposed for switching UGVSC and providing DC offset rejection and immunity against oscillatory errors due to sub harmonics, thereby improving the power quality (PQ). Fuzzy logic control (FLC) is implemented for the speed control of the salient pole synchronous generator (SG) driven by the wind turbine. The FLC provides the tracking of the reference speed under high overshoot transient conditions and narrow bandwidth. The switching of MSVSC is obtained by field oriented control (FOC). The dynamic performance is improved by the wind feed-forward term, which reduces the oscillation ensuring balanced and sinusoidal grid currents. The generated power from the WEGS, is fed to the grid. The weak grid conditions namely grid voltage unbalance, voltage sag, voltage swell and grid voltage distortion, are considered.  Test results provide the effectiveness of the system with increased wind penetration and performance under weak grid conditions. Moreover, improving the PQ, the grid current total harmonic distortion (THD).

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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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