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Derivation of a global model of a two-stage photovoltaic microinverter using sliding-mode control

机译:使用滑模控制推导出两级光伏微逆变器的全局模型

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This paper develops a global model of a two-stage grid-connected microinverter which uses sliding-mode control laws in both stages. In the study, it is considered that the microinverter is fed by a current source representing the photovoltaic module with a capacitor connected in parallel. The model of the DC-DC stage is obtained from the linearization of the ideal sliding dynamics of the converter considering that it is controlled through the input current. The DC-AC stage tied to the grid is considered as the load of the DC-DC stage. This representation allows including the voltage regulation loop used to stabilize the DC-link voltage through the value of the output current. The model is used to evaluate the local stability of the DC-link of the microinverter which represents the power balance of the system. The results are validated by means of simulations and experimental results.
机译:本文开发了一种双级网格连接的微逆变器的全局模型,其在两个阶段使用滑模控制法律。在该研究中,认为微换体通过表示具有并联的电容器的电容器的电流源供给电流源。考虑到它通过输入电流控制,从转换器的理想滑动动力学的线性化获得了DC-DC级的模型。连接到网格的DC-AC阶段被认为是DC-DC级的负载。该表示允许包括用于通过输出电流的值稳定DC链路电压的电压调节回路。该模型用于评估微逆变器的DC链路的局部稳定性,其代表系统的功率平衡。结果通过模拟和实验结果验证。

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