Advanced nonlinear method of a Photovoltaic system connected to the single-phase network

Ilhem Bouchriha, Ali Ben Ghanem, K. Nouri
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Abstract

This paper presents an advanced nonlinear method of a photovoltaic energy chain connected to single-phase network via a single-phase inverter with a filter LCL. In this work, we tried to achieve three objectives of control: (i) the voltage supplied by the photovoltaic panel(PV) must follow the point of maximum power (MPPT),(ii) the voltage across the coupling capacitor must be regulated to ensure the transfer of energy between the two parts,(iii) the current supplied to the network must have a sinusoidal shape and in phase with the grid voltage. To achieve these objectives, we use a nonlinear method based on sliding modes and stability, in Lyapunov's sense, as a mathematical tool for the design of regulators. The simulation results were carried out in Matlab / Simulink. They show that regulators designed achieve their goals.
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光伏系统接入单相电网的一种先进非线性方法
本文提出了一种采用带滤波器LCL的单相逆变器与单相电网连接的光伏能量链非线性优化方法。在这项工作中,我们试图实现三个控制目标:(i)光伏板(PV)提供的电压必须遵循最大功率(MPPT)点,(ii)必须调节耦合电容器两端的电压以确保两部分之间的能量传递,(iii)提供给网络的电流必须具有正弦形状并与电网电压相一致。为了实现这些目标,我们使用基于滑动模式和稳定性的非线性方法,在李雅普诺夫的意义上,作为设计调节器的数学工具。仿真结果在Matlab / Simulink中进行。它们表明,监管机构旨在实现其目标。
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