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DOE OSTI · 2565821

A Fully Decentralized Modulation Scheme for Modular Multilevel Converters

Abstract

As the number of submodules rapidly increase, control architecture of Modular Multilevel Converters (MMCs) is transforming from centralized to distributed in order to address the challenges of tremendous computational burden and massive wiring. In this digest, we propose a modulation scheme for the MMCs with distributed controls, where each submodule is able to handle both controls and modulation in a decentralized manner. It enables the distributed controllers to synchronize in terms of fast-switching pulse width modulation (PWM). Aiming at this key technical challenge, this research develops a physics-informed PWM control strategy of mirroring the spontaneous synchronization feature of coupled oscillator’s behavior at switching frequency. Thanks to less reliance on wirings and communications, the proposed approach has the potential of i) improving reliability of MMC systems, and ii) reducing cost and space requirements for MMCs. The proposed approach has been preliminarily verified through a simulation tool for power electronics systems.

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BibTeXRIS

Lu, Minghui [BATTELLE (PACIFIC NW LAB)], Elizondo, Marcelo A. [BATTELLE (PACIFIC NW LAB)], Salsbury, Timothy [BATTELLE (PACIFIC NW LAB)], Adetola, Veronica A. [BATTELLE (PACIFIC NW LAB)], Schneider, Kevin P. [BATTELLE (PACIFIC NW LAB)] (ORCID:0000000317495014). 2024-12-31. A Fully Decentralized Modulation Scheme for Modular Multilevel Converters. https://www.osti.gov/biblio/2565821

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