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Modeling of a Two-Stage Photovoltaic System for Grid Code Compatibility

机译:电网代码兼容性的两阶段光伏系统建模

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A complete modeling of two-stage photovoltaic (PV) system operating under large grid disturbances is developed in this study. The grid-integrated PV system are expected to operate through low voltage and provide grid reinforcement by delivering the reactive current during voltage dips, as per most grid standards. Proper current references generation and appropriate controllers design are basis for the effective realization of low voltage ride-through (LVRT) capability. Accordingly, a complete LVRT strategy based on Chinese grid code is developed for PV system under large grid disturbances to enhance power quality and stability. The developed scheme contains the current references computation technique to achieve the provisions of grid code and to guarantee seamless function for PV system under abnormal grid conditions with current amplitude limit functions. Numerous field tests and simulations are performed to evaluate the efficacy of the developed strategy.
机译:在这项研究中,开发了在大电网干扰下运行的两阶段光伏(PV)系统的完整模型。根据大多数电网标准,与电网集成的光伏系统有望在低压下运行,并通过在电压突降期间提供无功电流来提供电网加固。正确的电流基准生成和适当的控制器设计是有效实现低压穿越(LVRT)功能的基础。因此,针对大电网干扰下的光伏系统,开发了基于中文电网代码的完整LVRT策略,以提高电能质量和稳定性。所开发的方案包含电流参考计算技术,以实现电网规则的规定,并通过异常电流限制功能,在异常电网条件下保证光伏系统的无缝功能。进行了大量的现场测试和模拟,以评估所开发策略的有效性。

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