Novel sorted PWM strategy and control for photovoltaic‑based grid‑connected cascaded H‑bridge inverters


Vol. 25, No. 3, pp. 488-499, Mar. 2025
10.1007/s43236-024-00902-5




 Abstract

This paper proposes a novel sorted level-shifted U-shaped carrier-based pulse width modulation (SLSUC PWM) strategy combined with an input power control approach for a 13-level cascaded H-bridge multi-level inverter designed for grid connection, specifically tailored for photovoltaic (PV) systems, which avoids a double-stage power conversion confi guration. In this methodology, every inverter generates a quasi-square output voltage waveform with a width that is intricately linked to the output power of its corresponding PV panel. The application of this SLSUC pulse width modulation technique with input power control in a solar energy-based 13-level grid-tied inverter facilitates precise maximum power point (MPP) tracking for each of the PV panels under uniform and non-uniform irradiation conditions and ensures the consistent maintenance of capacitor voltage balance. Moreover, this novel SLSUC PWM method for 13-level inverters off ers a range of benefits, including a low total harmonic distortion (THD) in the output voltage of the multi-level inverter and higher inverter and MPPT efficiencies over the existing PWM techniques. To verify the efficacy of the proposed control method over existing techniques, a PV-based grid-connected multi-level inverter with the proposed control strategy undergoes modeling and simulation using MATLAB/Simulink. Then, experimental hardware-in-the-loop (EHIL) testing is conducted to confirm and evaluate its eff ectiveness.


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Cite this article

[IEEE Style]

G. Maheswari, K. M. Sharma, P. Prabhakaran, "Novel sorted PWM strategy and control for photovoltaic‑based grid‑connected cascaded H‑bridge inverters," Journal of Power Electronics, vol. 25, no. 3, pp. 488-499, 2025. DOI: 10.1007/s43236-024-00902-5.

[ACM Style]

Gudipati Maheswari, K Manjunatha Sharma, and Prajof Prabhakaran. 2025. Novel sorted PWM strategy and control for photovoltaic‑based grid‑connected cascaded H‑bridge inverters. Journal of Power Electronics, 25, 3, (2025), 488-499. DOI: 10.1007/s43236-024-00902-5.