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

Q3 Engineering
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Abstract

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.

使用带 LCL 滤波器的多电平 NPC 逆变器对连接到单相电网的单级光伏系统进行无传感器积分反步进控制
本文考虑了由三电平中性点箝位 (3L-NPC) 逆变器和 LCL 滤波器组成的单相并网光伏 (PV) 系统的控制问题。所提出的控制器旨在实现三重控制目标:(i) 通过强制电网电流跟踪与电网电压同相的正弦参考信号,保证 PF 校正 (PFC) 目标;(ii) 控制直流母线电容器电压跟踪最大功率点跟踪 (MPPT) 算法提供的参考值,以实现最大可用光伏功率;(iii) 通过调节两个输入电容器电压至相同值,确保平衡功率交换。为了实现这些目标,我们合成了一个多回路非线性控制器,其中包括三个控制回路,即通过积分反步法设计的 PFC 要求内回路、使用滤波比例积分 (PI) 调节器制定的电压控制外回路,以及使用 PI 调节器建立的功率平衡回路。由于存在大量无法测量的状态变量,因此所考虑的控制问题存在诸多困难。通过增加一个高增益观测器来估计太阳能电池板的电流,可以解决这一难题。通过使用 MATLAB/Simulink 平台进行数值模拟,证明了所提出的控制器在应对气候变化时的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IFAC-PapersOnLine
IFAC-PapersOnLine Engineering-Control and Systems Engineering
CiteScore
1.70
自引率
0.00%
发文量
1122
期刊介绍: All papers from IFAC meetings are published, in partnership with Elsevier, the IFAC Publisher, in theIFAC-PapersOnLine proceedings series hosted at the ScienceDirect web service. This series includes papers previously published in the IFAC website.The main features of the IFAC-PapersOnLine series are: -Online archive including papers from IFAC Symposia, Congresses, Conferences, and most Workshops. -All papers accepted at the meeting are published in PDF format - searchable and citable. -All papers published on the web site can be cited using the IFAC PapersOnLine ISSN and the individual paper DOI (Digital Object Identifier). The site is Open Access in nature - no charge is made to individuals for reading or downloading. Copyright of all papers belongs to IFAC and must be referenced if derivative journal papers are produced from the conference papers. All papers published in IFAC-PapersOnLine have undergone a peer review selection process according to the IFAC rules.
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