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September 10, 20250 citationsOpen Access

Spectral Analysis of Photovoltaic Inverter Current Under Harmonic Grid-Voltage Waveform Distortions

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EFEllen FörstnerASAnne-Christin SüßMNMoritz Noskiewicz

Key Points

  • Current of a grid-following inverter shows harmonic distortions from the supply voltage, confirming the auto-sensitivity effect.
  • The analysis includes both harmonic and interharmonic influences, indicating effects limit to a narrow frequency band only.
  • Real-world inspired cases demonstrate the need for spectral consideration in inverter designs to improve power quality.
  • Distorted voltage waveforms necessitate an ideal sine wave reference for set-point definitions in photovoltaic inverters.

Abstract

In the context of Photovoltaic (PV) installations, power quality is a largely discussed topic and reports on several disturbance events related to PV inverters exist. Respective frequencies cover a broad range and occur in the harmonic, sub-, and interharmonic regimes. To account for the diversity of reported frequencies, we analyze PV-related power quality impairments on a spectral level. Our hardware setup allows investigations of inverters in grid-tied conditions. We contribute three real-world-inspired test cases to evaluate the inverter current under distorted supply conditions. Our observations confirm that the current of a grid-following inverter reflects harmonic distortions imprinted onto the supply voltage known as the auto-sensitivity effect. The analysis presented in this work additionally includes both harmonic and interharmonic subgroups and shows that the influence is limited to a narrow frequency band and does not extend into the neighboring interharmonic frequencies. Both imprinted distortions as well as setup-related background are taken into account. To prevent further degradation of power quality, PV inverters should use an internal ideal sine wave reference for set-point definition rather than replicating the voltage waveform. Inverter-related investigations should maintain a spectral perspective of both voltages and currents to account for frequency-sensitive and setup-related behavior.

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Cite This Study

Förstner et al. (2025) studied this question.

synapsesocial.com/papers/68c1d23054b1d3bfb60f7ce5https://doi.org/10.36227/techrxiv.175623114.49667134/v1
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