Issue
Sci. Tech. Energ. Transition
Volume 80, 2025
Innovative Strategies and Technologies for Sustainable Renewable Energy and Low-Carbon Development
Article Number 30
Number of page(s) 11
DOI https://doi.org/10.2516/stet/2025011
Published online 26 March 2025
  • Nathwani J., Kammen D.M. (2019) Affordable energy for humanity: a global movement to support universal clean energy access[J], Proc. IEEE 107, 9, 1780–1789. [Google Scholar]
  • Wang X., Wen H., Chu G., et al. (2024) Performance quantization and comparative assessment of voltage equalizers in mismatched photovoltaic differential power processing systems[J], IEEE Trans. Power Electron. 39, 1, 1656–1675. [Google Scholar]
  • Zhao Y., Zhang G., Hu W., et al. (2023) Meta-learning based voltage control for renewable energy integrated active distribution network against topology change[J], IEEE Trans. Power Syst. 38, 6, 5937–5940. [Google Scholar]
  • Pierrou G., Wang X. (2021) An online network model-free wide-area voltage control method using PMUs[J], IEEE Trans. Power Syst. 36, 5, 4672–4682. [Google Scholar]
  • Shayani R.A., de Oliveria M.A.G. (2011) Photovoltaic generation penetration limits in radial distribution systems[J], IEEE Trans. Power Syst. 26, 3, 1625–1631. [Google Scholar]
  • León L.F., Martinez M., Ontiveros L.J., et al. (2022) Devices and control strategies for voltage regulation under influence of photovoltaic distributed generation[J], IEEE Latin Am. Trans. 20, 5, 731–745. [Google Scholar]
  • Gao Y., Hu X., Yang W., et al. (2017) Multi-objective bilevel coordinated planning of distributed generation and distribution network frame based on multi-scenario technique considering timing characteristics[J], IEEE Trans. Sustain. Energy 8, 4, 1415–1429. [Google Scholar]
  • Samadi A., Eriksson R., Soder L., et al. (2014) Coordinated active power-dependent voltage regulation in distribution grids with PV systems[J], IEEE Trans. Power Deliv. 29, 3, 1454–1464. [Google Scholar]
  • Pukhrem S., Basu M., Conlon M.F., et al. (2017) Enhanced network voltage management techniques under the proliferation of rooftop solar PV installation in low-voltage distribution network[J], IEEE J. Emerg. Sel. Top. Power Electron. 5, 2, 681–694. [Google Scholar]
  • Weckx S., Gonzalez C., Driesen J. (2014) Combined central and local active and reactive power control of PV inverters[J], IEEE Trans. Sustain. Energy 5, 3, 776–784. [Google Scholar]
  • Ghosh S., Rahman S., Pipattanasomporn M. (2017) Distribution voltage regulation through active power curtailment with PV inverters and solar generation forecasts[J], IEEE Trans. Sustain. Energy 8, 1, 13–22. [Google Scholar]
  • Chowdhury M.M.U.T., Hasan M.S., Kamalasadan S. (2025) A novel voltage optimization co-simulation framework for electrical distribution system with high penetration of renewables[J], IEEE Trans. Indust. Appl. 61, 1, 1080–1090. [Google Scholar]
  • Gerdroodbari Y.Z., Razzaghi R., Shahnia F. (2021) Decentralized control strategy to improve fairness in active power curtailment of PV inverters in low-voltage distribution networks[J], IEEE Trans. Sustain. Energy 12, 4, 2282–2292. [Google Scholar]
  • Pukhrem S., Basu M., Conlon M.F., et al. (2017) Enhanced network voltage management techniques under the proliferation of rooftop solar PV installation in low-voltage distribution network[J], IEEE J. Emerg. Sel. Top. Power Electron. 5, 2, 681–694. [Google Scholar]
  • Xu X., Li Y., Yan Z., et al. (2023) Hierarchical central-local inverter-based voltage control in distribution networks considering stochastic PV power admissible range[J], IEEE Trans. Smart Grid 14, 3, 1868–1879. [Google Scholar]
  • Ahmed E.E., Demirci A., Poyrazoglu G., et al. (2024) An equitable active power curtailment framework for overvoltage mitigation in PV-rich active distribution networks[J], IEEE Trans. Sustain. Energy 15, 4, 2745–2757. [Google Scholar]
  • Kolakaluri V.K., Aalam M.N., Sarkar V. (2024) Sampling time modulation of a photovoltaic power tracking controller based upon real-time monitoring of converter dynamics[J], IEEE Trans. Power Electron. 39, 2, 2822–2834. [Google Scholar]
  • Teng J.H., Huang W.H., Hsu T.A., et al. (2016) Novel and fast maximum power point tracking for photovoltaic generation[J], IEEE Trans. Indust. Electron. 63, 8, 4955–4966. [Google Scholar]
  • Yang F., Sun Q., Han Q.L., et al. (2016) Cooperative model predictive control for distributed photovoltaic power generation systems[J], IEEE J. Emerg. Sel. Top. Power Electron. 4, 2, 414–420. [Google Scholar]
  • Callegari J.M.S., de Oliveira A.L.P., Xavier L.S., et al. (2023) Voltage detection-based selective harmonic current compensation strategies for photovoltaic inverters[J], IEEE Trans. Energy Convers. 38, 3, 1602–1613. [Google Scholar]
  • Liu Q., Zhang L., Zhang H., et al. (2025) Distributed secondary optimal control with fast voltage recovery and minimum generation cost for islanded DC microgrids[J], IEEE Trans. Smart Grid 16, 1, 4–15. [Google Scholar]

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