Grid-connected of photovoltaic module using nonlinear control

H. E. Fadil, F. Giri, Josep M. Guerrero
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引用次数: 27

Abstract

The problem of controlling single-phase grid connected photovoltaic (PV) system is considered. The control objective is fourfold: (i) asymptotic stability of the closed loop system, (ii) maximum power point tracking (MPPT) of PV module (iii) tight regulation of the DC bus voltage, and (iv) unity power factor (PF) in the grid. A nonlinear controller is developed using the backstepping design technique based on an averaged nonlinear model of the whole controlled system. The model accounts, on the one hand, for the nonlinear dynamics of the underlying boost converter and inverter and, on the other, for the nonlinear characteristic of PV panel. It is formally shown, through theoretical analysis and simulation results, that the proposed controller does achieve its objectives.
光伏组件并网采用非线性控制
研究了单相并网光伏系统的控制问题。控制目标有四个方面:(1)闭环系统的渐进稳定性;(2)光伏模块的最大功率点跟踪(MPPT);(3)直流母线电压的严密调节;(4)电网的单位功率因数(PF)。在整个被控系统的平均非线性模型的基础上,利用反演设计技术设计了一种非线性控制器。该模型一方面考虑了底层升压变换器和逆变器的非线性动力学特性,另一方面也考虑了光伏板的非线性特性。理论分析和仿真结果表明,所设计的控制器达到了预期目标。
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