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首页> 外文期刊>Power Electronics, IEEE Transactions on >Decoupled Active and Reactive Power Control for Large-Scale Grid-Connected Photovoltaic Systems Using Cascaded Modular Multilevel Converters
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Decoupled Active and Reactive Power Control for Large-Scale Grid-Connected Photovoltaic Systems Using Cascaded Modular Multilevel Converters

机译:使用级联模块化多电平转换器的大规模并网光伏系统的有功和无功解耦控制

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摘要

Large-scale grid-connected photovoltaic (PV) systems significantly contribute to worldwide renewable energy growth and penetration, which has inspired the application of cascaded modular multilevel converters due to their unique features such as modular structures, enhanced energy harvesting capability, scalability and so on. However, power distribution and control in the cascaded PV system faces tough challenge on output voltage overmodulation when considering the varied and nonuniform solar energy on segmented PV arrays. This paper addresses this issue and proposes a decoupled active and reactive power control strategy to enhance system operation performance. The relationship between output voltage components of each module and power generation is analyzed with the help of a newly derived vector diagram which illustrates the proposed power distribution principle. On top of this, an effective control system including active and reactive components extraction, voltage distribution and synthesization, is developed to achieve independent active and reactive power distribution and mitigate the aforementioned issue. Finally, a 3-MW, 12-kV PV system with the proposed control strategy is modeled and simulated in MATLAB and PSIM cosimulation platform. A downscaled PV system including two cascaded 5-kW converters with proposed control strategy is also implemented in the laboratory. Simulation and experimental results are provided to demonstrate the effectiveness of the proposed control strategy for large-scale grid-connected cascaded PV systems.
机译:大规模并网光伏(PV)系统极大地促进了全球可再生能源的增长和渗透,由于其模块化结构,增强的能量收集能力,可扩展性等独特功能,激发了级联模块化多电平转换器的应用。 。但是,当考虑分段PV阵列上变化的太阳能和不均匀的太阳能时,级联PV系统中的功率分配和控制面临着输出电压过调制的严峻挑战。本文解决了这个问题,并提出了一种分离的有功和无功功率控制策略,以增强系统的运行性能。借助新推导的矢量图来分析每个模块的输出电压分量与发电之间的关系,该矢量图说明了所建议的配电原理。在此之上,开发了一种有效的控制系统,该系统包括有功和无功分量提取,电压分配和合成,以实现独立的有功和无功功率分配并减轻上述问题。最后,在MATLAB和PSIM协同仿真平台中对具有所提出的控制策略的3 MW,12 kV光伏系统进行建模和仿真。在实验室中还实施了一个缩小规模的光伏系统,该系统包括两个具有建议控制策略的级联5 kW转换器。仿真和实验结果证明了该控制策略对大规模并网光伏发电系统的有效性。

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