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Analysis and Control of a Photovoltaic System: Application to a High-Penetration Case Study

机译:光伏系统的分析与控制:在高渗透率案例研究中的应用

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This paper explores a two-stage, multistring photovoltaic system connected by a common dc bus to a centralized inverter, interfaced with a utility grid. The centralized inverter is controlled via a decoupled current control method and interfaced to the utility grid through a distribution transformer. Inverter control is completely independent of maximum power point control of the boost converter, used to step up the photovoltaic (PV) array voltage. Modeling and stability analysis of the photovoltaic system interfaced with the IEEE 14 bus grid system via a double circuit transmission line are presented. A control strategy is developed to overcome instability problems associated with the series compensated transmission connecting the photovoltaic system to the grid. Studies are also conducted that explore the transient response of the photovoltaic system following a three-phase and single-line to ground fault on the transmission line. Additionally, participation factor analysis is applied to a small signal model of the entire system to identify the parameters that have the most influence on the system stability. The developed models and analysis are validated through detailed simulation studies. The results obtained from this paper reveal the importance of conducting system level analysis when characterizing grid-connected PV systems.
机译:本文探讨了一个两级,多串光伏系统,该系统通过公共直流总线连接到集中式逆变器,并与公用电网连接。集中式逆变器通过解耦电流控制方法进行控制,并通过配电变压器连接到公用电网。逆变器控制完全独立于升压转换器的最大功率点控制,升压转换器用于提高光伏(PV)阵列电压。提出了通过双回输电线路与IEEE 14总线网格系统接口的光伏系统的建模和稳定性分析。开发了一种控制策略来克服与将光伏系统连接到电网的串联补偿传输相关的不稳定问题。还进行了研究,研究了光伏系统在输电线路上出现三相和单线接地故障后的瞬态响应。此外,将参与因子分析应用于整个系统的小信号模型,以识别对系统稳定性影响最大的参数。通过详细的仿真研究验证了开发的模型和分析。从本文获得的结果揭示了在表征并网光伏系统时进行系统级分析的重要性。

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