A Single DC Source Five-Level Switched Capacitor Inverter for Grid-Integrated Solar Photovoltaic System: Modeling and Performance Investigation

Author:

Islam Md. Tariqul1ORCID,Alam Md. Ahsanul1ORCID,Lipu Molla Shahadat Hossain1ORCID,Hasan Kamrul2,Meraj Sheikh Tanzim3ORCID,Masrur Hasan4ORCID,Rahman Md. Fayzur1

Affiliation:

1. Department of Electrical and Electronic Engineering, Green University of Bangladesh, Dhaka 1207, Bangladesh

2. School of Electrical Engineering, College of Engineering, Universiti Teknologi MARA, Shah Alam 40450, Malaysia

3. Department of Electrical and Electronic Engineering, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia

4. Interdisciplinary Research Center of Smart Mobility and Logistics, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia

Abstract

Boost converters and multilevel inverters (MLI) are frequently included in low-voltage solar photovoltaic (PV) systems for grid integration. However, the use of an inductor-based boost converter makes the system bulky and increases control complexity. Therefore, the switched-capacitor-based MLI emerges as an efficient DC/AC voltage convertor with boosting capability. To make classical topologies more efficient and cost-effective for sustainable power generation, newer topologies and control techniques are continually evolving. This paper proposes a reduced-component-count five-level inverter design for generating stable AC voltages for sustainable grid-integrated solar photovoltaic applications. The proposed topology uses seven switching devices of lower total standing voltage (TSV), three diodes, and two DC-link capacitors to generate five-level outputs. By charging and discharging cycles, the DC capacitor voltages are automatically balanced. Thus, no additional sensors or control circuitry is required. It has inherent voltage-boosting capability without any input boost converter. A low-frequency-based half-height (HH) modulation technique is employed in the standalone system for better voltage quality. Extensive simulations are performed in a MATLAB/Simulink environment to estimate the performance of the proposed topology, and 17.58% THDs are obtained in the phase voltages. Using a small inductor in series or an inductive load, the current THD reduces to 8.23%. Better dynamic performance is also observed with different loading conditions. A miniature five-level single-phase laboratory prototype is developed to verify the accuracy of the simulation results and the viability of the proposed topology.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A new fault-tolerant converter for renewable energy applications with improved reliability;International Journal of Electrical Power & Energy Systems;2024-10

2. A structural review on reduced switch count and hybrid multilevel inverters;Frontiers in Energy Research;2024-07-09

3. Harmonics Minimization of Symmetric Five-Level Inverter Using Improved LSF Modulation Scheme;IEEE Access;2024

4. A New Self-Balancing Five-Level Switch Capacitor Inverter for Standalone Applications;2023 10th IEEE International Conference on Power Systems (ICPS);2023-12-13

5. Sensorless Dc-Link Auto Voltage Balancing for Five-Level NPC Inverter with Boosting Capability;2023 5th International Conference on Sustainable Technologies for Industry 5.0 (STI);2023-12-09

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