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A generic model of two-stage grid-connected PV systems with primary frequency response and inertia emulation

机译:具有初级频率响应和惯性仿真的两阶段并网光伏系统的通用模型

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Photovoltaic (PV) stations are increasingly becoming subject to grid code requirements that include frequency response and active power control capability. The main goal of this paper is to propose a generic model for a two-stage grid-connected PV system with frequency response capability, suitable for power system studies. The proposed model includes a suitable control scheme, which provides both droop and inertial response, as well as the ability to operate at a scheduled active power reserve, enabling thus the provision of under-frequency response. A linearized small-signal model is developed to assess the stability of the proposed PV power control loop when the PV generator provides frequency response, whereas time-domain simulations are performed in order to quantify the benefits achieved by droop-type and inertia frequency controllers, including a discussion on the selection of their parameters. The analysis demonstrates the satisfactory performance of the proposed PV system model, which provides all functionality required by grid codes in the context of active power control. (C) 2015 Elsevier B.V. All rights reserved.
机译:光伏(PV)站越来越受网格代码要求的约束,其中包括频率响应和有功功率控制功能。本文的主要目的是为具有频率响应能力的两级并网光伏系统提出一个通用模型,适用于电力系统研究。所提出的模型包括合适的控制方案,该方案既提供了下垂响应也提供了惯性响应,并具有在计划的有功功率储备下运行的能力,从而能够提供低频响应。开发了一个线性化的小信号模型,以评估当PV发电机提供频率响应时所提出的PV功率控制环路的稳定性,而时域仿真则是为了量化下垂型和惯性频率控制器所获得的收益,包括有关其参数选择的讨论。分析表明,所提出的光伏系统模型具有令人满意的性能,该模型可在有功功率控制的情况下提供电网规范所需的所有功能。 (C)2015 Elsevier B.V.保留所有权利。

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