Stability assessment of current controller with harmonic compensator for lcl‐filtered grid‐connected inverter under distorted weak grid

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Abstract

An assessment of the stability and performance of current controllers with harmonic compensators is presented for an inductive‐capacitive‐inductive (LCL)‐filtered grid‐connected inverter under distorted weak grid conditions. By using two typical current control schemes which are the direct current controller with the capacitor current‐based active damping and integralresonant state feedback current controller, the closed‐loop system stability and current control performance are investigated in the presence of both uncertain grid impedance and distorted grid. Even though the controller stability has been investigated under weak grid in several studies, the stability assessment of the entire current control scheme, including the harmonic resonant controllers, still needs a further comprehensive investigation. The system stability is analyzed by obtaining the movement of the closed‐loop poles in the discrete‐time domain when the grid impedance varies. To fully study the impact of distorted weak grid condition on the LCL filters, three LCL filter parameter sets giving the resonance frequency in different frequency bands are chosen for the purpose of evaluating the system robustness and grid‐injected current quality. In order to support the presented theoretical analyses, comprehensive simulation and experimental results based on 32‐bit DSP TMS320F28335 to control 2 kVA grid‐connected inverter are presented in terms of grid current quality and control stability in the environment of both uncertain grid impedance and distorted grid.

Original languageEnglish
Article number212
Pages (from-to)1-32
Number of pages32
JournalApplied Sciences (Switzerland)
Volume11
Issue number1
DOIs
StatePublished - 1 Jan 2021

Keywords

  • Distorted weak grid
  • Grid impedance variation
  • Grid‐connected inverter
  • Harmonic compensator
  • LCL filter
  • Stability assessment

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