Sensorless integral backstepping control of a single-stage photovoltaic system connected to the single-phase grid using a multi-level NPC inverter with an LCL filter

被引:0
|
作者
Chakiri, S. [1 ]
Abouelmahjoub, Y. [1 ]
Mchaouar, Y. [1 ]
Abouobaida, H. [1 ]
Giri, F. [2 ]
Khentaoui, O. [1 ]
机构
[1] Univ Chouaib Doukkali, Natl Sch Appl Sci, LabSIPE, El Jadida 24002, Morocco
[2] Univ Caen Basse Normandie, LAC LAB, EA 7478, Caen, France
来源
IFAC PAPERSONLINE | 2024年 / 58卷 / 13期
关键词
Photovoltaic system; Three-level neutral point clamped inverter; Integral backstepping; MPPT; Power factor correction; High-gain observer; Voltage balance; Nonlinear control; PI controller;
D O I
10.1016/j.ifacol.2024.07.466
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, the control problem of a single-phase, grid-tied photovoltaic (PV) system consisting of a three-level neutral point clamped (3L-NPC) inverter and an LCL filter is considered. The proposed controller aims at achieving threefold control objectives: (i) guaranteeing the PF correction (PFC) objective by enforcing the current of the grid to track a sinusoidal reference signal in phase with the grid voltage; (ii) controlling the DC bus capacitor voltages to follow a reference value provided by the maximum power point tracking (MPPT) algorithm to achieve the maximum available PV power; (iii) ensuring a balanced power exchange through the regulation of the two input capacitor voltages to the same values. To achieve these aims, a multi -loop nonlinear controller is synthesized, including three control loops, specifically the inner PFC requirement loop designed through the integral backstepping approach, the outer voltage control loop formulated using a filtered proportional integral (PI) regulator, and the power balance loop built up using a PI regulator. The control problem under consideration entails several difficulties as the existence of numerous state variables that are inaccessible to measurements. This challenge is addressed by adding a high-gain observer to estimate the current of the solar panels. The performance of the proposed controller against climate changes is demonstrated via numerical simulations using the MATLAB/Simulink platform. Copyright (c) 2024 The Authors.
引用
收藏
页码:98 / 103
页数:6
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