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Operational and control approach for PV power plants to provide inertial response and primary frequency control support to power system black-start

机译:用于PV发电厂的操作和控制方法为电力系统提供惯性响应和初级频率控制支持

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摘要

The renewable generation growth, which includes photovoltaic power plants, has posed challenges for the planning and operation of contemporary power systems. High penetration levels of generation based on fully rated converters makes the black-start of power systems more difficult due to the low equivalent inertia of the system, the performance deterioration of the primary frequency control, the reduced number of black-start units, and the energization of large loads. In the context of the planning and operational challenges imposed by renewable generation, this work proposes an operational and control approach for centralized photovoltaic generation to provide inertial response and primary frequency control support to the black-start of bulk power systems. The proposed control aims to provide inertial response and primary frequency control support only during the system restoration process. The work also proposes an analytical formulation to assess the impact of the operating point of photovoltaic modules on the dynamics of photovoltaic units. The obtained results have shown that photovoltaic power plants are capable of providing support to the black-start of power systems, improving the dynamic and steady-state performance of the system frequency response during the black-start. The performed dynamic analyses have shown that the operational region of the photovoltaic modules significantly affects the dynamics of the power balance in the photovoltaic unit and, consequently, the dynamics of the load pick-up of the photovoltaic modules. The proposed dynamic analysis is useful to support the formulation of control approaches for de-loaded operation of photovoltaic power plants.
机译:可再生的生长,包括光伏发电厂,对当代电力系统的规划和运营构成了挑战。基于完全额定转换器的发电的高穿透水平使电力系统的黑色开始由于系统的低等效惯性,初级频率控制的性能恶化,黑色起始单位的数量减少,以及大载荷的通电。在可再生业代施加的规划和业务挑战的背景下,这项工作提出了集中光伏发电的操作和控制方法,为散装电力系统的黑色开始提供惯性响应和初级频率控制支持。所提出的控制旨在仅在系统恢复过程中提供惯性响应和初级频率控制支持。该工作还提出了一种分析制剂,以评估光伏模块的操作点对光伏单元动态的影响。所获得的结果表明,光伏发电厂能够为电力系统的黑色启动提供支持,从而在黑色开始期间提高系统频率响应的动态和稳态性能。所执行的动态分析表明光伏模块的操作区域显着影响光伏单元中的功率平衡的动态,从而显着地影响光伏模块的负载拾取的动力学。所提出的动态分析可用于支持对光伏发电厂的卸载操作的控制方法的制定。

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