Combination of sliding mode control and non-voltage measurement NLM modulation for modular multilevel converter

Authors

  • Duong Nguyen Duc Vietnam National University of Agriculture
  • Hieu Pham Chi Hanoi University of Science and Technology
  • Thang To Thanh Hanoi University of Science and Technology
  • Nam Le Hoai Hanoi University of Science and Technology
  • Cuong Tran Hung Thuyloi University
  • Phuong Pham Viet Đại học Bách Khoa Hà Nội

Keywords:

Modular Multilevel Converter, Nearest Level Modulation, Sliding Mode Control

Abstract

Modular Multilevel Converter (MMC) is an optimal solution for the advanced power conversion for Medium Voltage (MV) and High Voltage (HV) application. This paper proposes an enhanced sensorless Nearest Level Modulation (NLM) with a Sliding Mode Controller (SMC) scheme with Integral Sliding Surface for the grid-connected case of the MMC where it stands as a DC/AC inverter. The proposed SMC when applied for MMC shows some outstanding advantages such as, fast response, good robustness, and stability under transient conditions. Additionally, the sensorless NLM is proven to be effiecient in terms of capacitor voltages balancing while maintaining output voltages tracking the reference voltages fed by the SMC. The simulation results on MATLAB/SIMULINK for the MMC under varying active and reactive power is conducted so as to confirm the correctness and efficiency of the proposed method

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Published

06-10-2025

How to Cite

Nguyen Duc, D., Pham Chi, H., To Thanh, T., Le Hoai, N., Tran Hung, C., & Pham Viet, P. (2025). Combination of sliding mode control and non-voltage measurement NLM modulation for modular multilevel converter. Journal of Measurement, Control, and Automation, 29(3), 77–82. Retrieved from https://mca-journal.org/index.php/mca/article/view/346

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