Active and Reactive Power Control Strategy of the Modular Multilevel Converter for Grid-Connected Large Scale Photovoltaic Conversion Plants

Mohammad Mirzaie Banafsh Tappeh, J. Shokrollahi Moghani, A. Khorsandi
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引用次数: 4

Abstract

Power converter design play an essential role in harvesting cheap and reliable electrical energy from solar energy. In the design of the converters, an appropriate trade-off between power converter output power quality and complexity should be made. Meanwhile, modular multilevel converters (MMC) are such a popular choice due to significant advantages like modularity, switching redundancy, the high number of voltage levels, lower output harmonics, elimination of expensive and huge output filters, etc. In this paper, a modified control strategy considering photovoltaic array structure for a high power MMC is presented. The proposed approach results in enormous faster dynamic and decoupled injected active and reactive power control. Also, using a single carrier modulation technique, and applying it to the capacitor voltage balancing algorithm, the capacitor voltage ripple is constrained to the allowed limits, which significantly decreases the circulation current. A 3MW 9-level MMC has been evaluated by MATLAB/Simulink to approve the operation of suggested modified current loop MMC controller.
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并网大型光伏电站模块化多电平变流器有功无功控制策略
电源转换器的设计在从太阳能中获取廉价可靠的电能方面起着至关重要的作用。在变换器的设计中,应在功率变换器的输出功率质量和复杂度之间进行适当的权衡。与此同时,模块化多电平转换器(MMC)由于其模块化、开关冗余、高电压电平、低输出谐波、消除昂贵和巨大的输出滤波器等显著优势而成为一种流行的选择。针对大功率MMC系统,提出了一种考虑光伏阵列结构的改进控制策略。该方法可以大大加快动态和解耦的注入有功和无功控制速度。采用单载波调制技术,将其应用于电容电压平衡算法中,使电容电压纹波控制在允许的范围内,大大降低了循环电流。利用MATLAB/Simulink对3MW 9级MMC进行了仿真,验证了改进的电流环MMC控制器的有效性。
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