Variable Submodule Voltage Control for Enhanced Efficiency in DAB-Integrated Modular Multilevel Converters

电压 转换器 电压调节 电子工程 模块化设计 变压器 谐波 电压优化 交流电源 工程类 电气工程 计算机科学 控制理论(社会学) 控制(管理) 操作系统 人工智能
作者
Marzio Barresi,Davide De Simone,Edoardo Ferri,Luigi Piegari
出处
期刊:Energies [Multidisciplinary Digital Publishing Institute]
卷期号:18 (15): 4096-4096 被引量:1
标识
DOI:10.3390/en18154096
摘要

Modular multilevel converters (MMCs) are widely used in power-conversion applications, including distributed energy storage integration, because of their scalability, high efficiency, and reduced harmonic distortion. Integrating battery storage systems into MMC submodules using dual active bridge (DAB) converters provides electrical isolation and reduces voltage stress, harmonics, and common-mode issues. However, voltage fluctuations due to the battery state of charge can compromise the zero-voltage switching (ZVS) operation of a DAB and increase the reactive power circulation, leading to higher losses and reduced system performance. To address these challenges, this study investigated an active control strategy for submodule voltage regulation in an MMC with DAB-based battery integration. Assuming single-phase-shift modulation, two control strategies were evaluated. The first strategy regulated the DAB voltage on one side to match the battery voltage on the other, scaled by the high-frequency transformer turns ratio, which facilitated the ZVS operation and reduced the reactive power. The second strategy optimized this voltage to minimize the total power-conversion losses. The proposed control strategies improved the efficiency, particularly at low power levels, achieving several percentage points of improvement compared to maintaining a constant voltage.
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