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Regression-Based Prediction of Harmonic Current Aggregation in Domestic LED Lighting Loads: A Case Study in Indonesia

Author

Listed:
  • Deny Hamdani

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia)

  • Agung Cahyadi Putra

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia
    Department of Electrical Engineering, Faculty of Engineering, Universitas Jenderal Soedirman, Purwokerto 53122, Indonesia)

  • Vica Claudia Meylinda

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia)

  • Arpan Zaeni

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia)

  • Kevin Marojahan Banjar-Nahor

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia)

  • Ngapuli Irmea Sinisuka

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia)

  • Pascal Dupuis

    (Université de Toulouse, Toulouse INP, CNRS, LAPLACE, UMR 5213, 31000 Toulouse, France)

  • Georges Zissis

    (Université de Toulouse, Toulouse INP, CNRS, LAPLACE, UMR 5213, 31000 Toulouse, France)

  • Laurent Canale

    (Université de Toulouse, Toulouse INP, CNRS, LAPLACE, UMR 5213, 31000 Toulouse, France)

  • Umar Khayam

    (School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Bandung 40132, Indonesia
    Graduate School of Multidisciplinary Science and Technology, Institut Teknologi Bandung, Bandung 40132, Indonesia)

Abstract

The widespread use of domestic LED lamps raises concerns about harmonic current aggregation when multiple units operate in parallel. This study presents a regression-based method for predicting aggregate current waveforms of identical LED lamps. Measurements conducted in accordance with IEC 61000-4-30:2015 involved 1–24 parallel-connected units of a 12 W lamp under controlled conditions. Individual harmonics through the 40th order were assessed against IEC 61000-3-2 product limits, while components up to the 50th order were retained for PCC-oriented characterization of large-scale aggregation, consistent with IEEE 519-2022. Although the product limits were satisfied, measured THD I remained at 88.6–92%, dominated by the 3rd, 5th, and 7th harmonics. Within the measured range, per-harmonic regressions were evaluated using R 2 and RMSE , while reconstructed time-domain waveforms produced NRMSE values of 5–10% relative to measured RMS current. Consistent phase angles indicated predominantly constructive aggregation. The model was then applied to an illustrative scenario of up to 100 identical lamps. Under unchanged lamp and supply conditions, the projection indicated a near-linear increase in RMS current, persistent THD I of approximately 90%, and continued dominance of low-order odd harmonics. Results beyond 24 lamps represent model-based extrapolation rather than experimental validation. The framework provides a baseline for harmonic current assessment in homogeneous LED installations.

Suggested Citation

  • Deny Hamdani & Agung Cahyadi Putra & Vica Claudia Meylinda & Arpan Zaeni & Kevin Marojahan Banjar-Nahor & Ngapuli Irmea Sinisuka & Pascal Dupuis & Georges Zissis & Laurent Canale & Umar Khayam, 2026. "Regression-Based Prediction of Harmonic Current Aggregation in Domestic LED Lighting Loads: A Case Study in Indonesia," Energies, MDPI, vol. 19(16), pages 1-23, August.
  • Handle: RePEc:gam:jeners:v:19:y:2026:i:16:p:3710-:d:2010540
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