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A DC-DC modular multilevel converter design for HVDC interconnection

2025
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Advisor: Prof. Dr. Ahmet Mete Vural

Abstract (EN)

High voltage direct current (HVDC) power transmission systems offer significant advantages over conventional high voltage alternating current (HVAC) power grids, including higher efficiency, enhanced long-distance bulk power transfer capability, improved controllability, and seamless integration of renewable energy sources such as offshore wind farms. HVDC systems also save operating costs, provide reliable power delivery to isolated or remote networks, and facilitate asynchronous power grid interconnections. To facilitate the integration of HVDC power systems with varying voltage levels while improving grid flexibility and reliability, advanced DC-DC power converter topologies are essential. This study presents a novel DC-DC modular multi-level converter (MMC) architecture that provides a suitable solution for integrating modern asynchronous HVDC power networks and these modern HVDC power systems with existing asynchronous HVAC power systems. The transformerless approach significantly reduces the proposed converter's volume, weight, price, and power loss. A detailed mathematical model and harmonic analysis of the proposed DC-DC MMC are derived, and simulation results demonstrate successful bi-directional power transfer between asynchronous grids. The control strategy ensures stable and efficient power flow regulation, confirming the effectiveness of the proposed DC-DC MMC for HVDC power network integration.

Author

Dr. Abdurrahim Erat

How to Cite

Abdurrahim Erat (Doctorate thesis). A DC-DC modular multilevel converter design for HVDC interconnection, 2025, Gaziantep University.

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