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A High-Frequency Link Multilevel Cascaded Medium-Voltage Converter for Direct Grid Integration of Renewable Energy Systems

机译:用于可再生能源系统直接电网集成的高频链路多级级联中压转换器

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摘要

Recent advances in solid-state semiconductors have led to the development of medium-voltage power converters (e.g., 6–36 kV) which could obviate the need for the step-up transformers of renewable power generation systems. The modular multilevel cascaded converters have been deemed as strong contenders for the development of medium-voltage converters, but the converters require multiple isolated and balanced dc supplies. In this paper, a high-frequency link multilevel cascaded medium-voltage converter is proposed. The common high-frequency link generates multiple isolated and balanced dc supplies for the converter, which inherently minimizes the voltage imbalance and common mode issues. An 11-kV system is designed and analyzed taking into account the specified system performance, control complexity, cost, and market availability of the power semiconductors. To verify the feasibility of the proposed system, a scaled down 1.73-kVA laboratory prototype test platform with a modular five-level cascaded converter is developed and explored in this paper, which converts a 210 V dc (rectified generator voltage) into three-phase 1 kV rms 50 Hz ac. The experimental results are analyzed and discussed. It is expected that the proposed new technology will have great potential for future renewable generation systems and smart grid applications.
机译:固态半导体的最新进展导致了中压功率转换器(例如6–36 kV)的发展,这可以消除对可再生能源发电系统升压变压器的需求。模块化多级级联转换器已被视为开发中压转换器的强大竞争者,但这些转换器需要多个隔离且平衡的直流电源。本文提出了一种高频链路多级级联中压变频器。公共高频链路为转换器生成多个隔离且平衡的直流电源,从本质上将电压不平衡和共模问题最小化。在设计和分析11 kV系统时,要考虑到特定的系统性能,控制复杂性,成本以及功率半导体的市场可用性。为了验证该系统的可行性,本文开发并探索了一种按比例缩小的1.73-kVA实验室原型测试平台,该平台具有模块化的五级串联转换器,可将210 V dc(整流后的发电机电压)转换为三相1 kV rms 50 Hz交流对实验结果进行了分析和讨论。预计拟议的新技术将为未来的可再生能源发电系统和智能电网应用带来巨大潜力。

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