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Grid-connected modeling, control and simulation of single-phase two-level photovoltaic power generation system coupled to a permanent magnet synchronous motor

机译:与永磁同步电动机耦合的单相两级光伏发电系统的并网建模,控制和仿真

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The objective of this work is to have the results concerning the electric characterization and modeling by Bond Graph of the photovoltaic system coupled to a permanent magnet synchronous motor. The modeling of the global system components is developed with the integration of inverter with filter. The model of the solar generating subsystem is particularly developed. It is shown that this model is interesting for analyzing the dynamic behavior of the system and for designing the control strategy. The operating point of a photovoltaic generator that is connected to a permanent magnet synchronous motor is determined by the intersection point of its characteristic curves. In general, this point is not the same as the generator's maximum power point. This difference means losses in the system performance. Other point developed in this paper is presents an improved maximum power point tracking (MPPT) algorithm of a PV system under real climatic conditions. The proposed MPPT is based on the perturbation and observation (P&O) strategy and the variable step method that control the load voltage to ensure optimal operating points of a PV system.
机译:这项工作的目的是获得与结合到永磁同步电动机上的光伏系统的通过Bond Graph进行电特性表征和建模有关的结果。全局系统组件的建模是通过将逆变器与滤波器集成在一起而开发的。特别开发了太阳能发电子系统的模型。结果表明,该模型对于分析系统的动态行为和设计控制策略很有意义。连接到永磁同步电动机的光伏发电机的工作点由其特性曲线的交点确定。通常,该点与发电机的最大功率点不同。这种差异意味着系统性能的损失。本文提出的其他观点提出了一种在实际气候条件下改进的光伏系统最大功率点跟踪(MPPT)算法。提出的MPPT基于摄动和观察(P&O)策略和可变步长方法,该方法控制负载电压以确保光伏系统的最佳工作点。

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