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Modular multilevel converter for large-scale photovoltaic generation with reactive power flow and unbalanced active power extraction capabilities

机译:模块化多电平转换器,用于大规模光伏发电,具有无功潮流和不平衡有功功率提取功能

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A modular multilevel converter (MMC) topology for high-scale three-phase photovoltaic power generation and its control scheme are proposed in this work. First, a complete model of the system is derived for a generalized n-modules converter. Second, a control strategy is proposed in order to achieve independent maximum power extraction from all the modules, to regulate all dc-links, and to control the injected currents to the grid to be sinusoidal and in-phase with grid voltages if transferring only active power, or to be sinusoidal and phase-shifted in order to transfer active power and simultaneously manage reactive power. These active and reactive power transfers are achieved in a balanced way at the medium voltage level. The proposed control strategy also allows the MMC operating only with a large amount of reactive power, without having any active power production on the PV arrays, which is a valuable feature for using the MMC in smartgrids. The proposed converter is capable of extracting the maximum power of each module at its PV array, even if the powers produced by them are unbalanced due to irregular solar irradiances. Simulation tests with extreme changes are developed to validate the operation, control and feasibility of the converter approach. (C) 2019 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:在这项工作中,提出了用于大规模三相光伏发电的模块化多电平转换器(MMC)拓扑及其控制方案。首先,为广义的n模块转换器导出系统的完整模型。其次,提出了一种控制策略,以实现从所有模块中独立提取最大功率,调节所有直流母线,以及在仅传输有功功率的情况下控制向电网注入的电流为正弦波并与电网电压同相功率,或者是正弦波和相移的,以便传输有功功率并同时管理无功功率。这些有功功率和无功功率的传递在中等电压水平下可以达到平衡。所提出的控制策略还允许MMC仅使用大量无功功率运行,而不会在PV阵列上产生任何有功功率,这对于在智能电网中使用MMC是一个宝贵的功能。所提出的转换器能够在其光伏阵列上提取每个模块的最大功率,即使它们产生的功率由于不规则的太阳辐射而失衡。开发了具有极端变化的仿真测试,以验证转换器方法的操作,控制和可行性。 (C)2019国际模拟数学与计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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