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Modeling and design of a flexible solar array simulator topology

机译:柔性太阳能阵列模拟器拓扑的建模与设计

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Photovoltaic (PV) systems have gained prominence in the context of distributed generation systems. The fundamental element of a PV grid-connected systems is the power converter. Before marketed power converters must be tested and certified according to the international standards. Therefore, a flexible equipment to test the converters is necessary. This paper presents the modeling and control structure of a solar array simulator (SAS) of 10 kW for testing inverters for photovoltaic applications. The limitations of conventional structures are pointed out and an improved structure based on two converter stages is proposed. The feasibility of the proposed SAS is shown through simulations using Matlab/Simulink package and experimental results. The simulator is tested for the system connected to resistive loads and to a photovoltaic converter model. The dynamical behavior is evaluated through solar irradiance variations and partial shadowing tests. Results showed that the proposed structures presents high capacity to simulate different shapes of solar irradiance, besides allow flexible configuration of the irradiance profile.
机译:光伏(PV)系统在分布式发电系统的背景下获得了突出。 PV网格连接系统的基本元件是电源转换器。在销售电源转换器必须根据国际标准进行测试和认证之前。因此,需要一种用于测试转换器的柔性设备。本文介绍了10 kW的太阳能阵列模拟器(SAS)的建模和控制结构,用于测试光伏应用的逆变器。提出了常规结构的局限性,提出了基于两个转换器级的改进结构。通过使用MATLAB / SIMULIND封装和实验结果,通过模拟显示所提出的SAS的可行性。测试模拟器的系统连接到电阻负载和光伏转换器模型。通过太阳辐照度变化和部分阴影测试来评估动力学行为。结果表明,该结构呈现了高容量来模拟太阳辐照度的不同形状,除了允许辐照曲线的灵活配置。

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