首页> 外文会议>Applied Power Electronics Conference and Exposition (APEC), 2012 Twenty-Seventh Annual IEEE >Modeling and stability analysis of a cascaded system composed of photovoltaic simulator and photovoltaic inverter
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Modeling and stability analysis of a cascaded system composed of photovoltaic simulator and photovoltaic inverter

机译:光伏模拟器与光伏逆变器组成的级联系统的建模与稳定性分析

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Photovoltaic (PVS) simulator is an important product for debugging the experiments of Photovoltaic products, such as photovoltaic inverters (PVI). Normally, Photovoltaic simulator works as a nonlinear source via cascading photovoltaic inverters. In this case, the whole system may be unstable when the impedance mismatching as the study of Middlebrook. Based on the existing conclusion of impedance of DC-DC converters, the output impedance of PVS which is controlled as single current loop is derived in this paper. Furthermore, the double-loop controlled PVI that is composed by a single-stage topology is studied to analyze its input impedance. The stability of the whole system is analyzed according to the Middlebrook's stability criterion and the parameters are designed to make the system more stable. Experimental results show that the stability of the system can be guaranteed by proper design.
机译:光伏(PVS)模拟器是调试光伏产品(例如光伏逆变器(PVI))的实验的重要产品。通常,光伏模拟器通过级联的光伏逆变器充当非线性源。在这种情况下,当阻抗不匹配时,整个系统可能会不稳定(如对Middlebrook的研究)。基于现有的DC-DC变换器阻抗结论,推导了以单电流环控制的PVS输出阻抗。此外,研究了由单级拓扑组成的双环受控PVI,以分析其输入阻抗。根据Middlebrook的稳定性准则分析了整个系统的稳定性,并设计了参数以使系统更加稳定。实验结果表明,通过适当的设计可以保证系统的稳定性。

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