独立光伏存储系统的直接反推超扭转算法控制器MPPT:设计与实时实现

IF 2.1 4区 工程技术 Q3 ENERGY & FUELS Journal of Solar Energy Engineering-transactions of The Asme Pub Date : 2023-03-08 DOI:10.1115/1.4062096
Ridha Benadli, D. Frey, Y. Lembeye, Marwen Bjaoui, B. Khiari, A. Sellami
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引用次数: 0

摘要

本文提出一种结合反步控制器(BC)和超扭转算法(STA)的直接最大功率点跟踪(MPPT)方法。为了提取光伏发电机通过升压dc-dc变换器与电池连接时产生的最大功率点(MPP),开发了直接反步超扭转算法控制(BSSTAC) MPPT。为了减少实现BSSTAC所需的传感器数量,提出了一种高增益观测器(HGO),通过测量光伏发电机的电压和电流来估计光伏存储系统的状态值。建议的技术是基于二次Lyapunov函数,不采用标准的MPPT算法。结果表明,与现有的扰动与观测(P&O)、传统滑模控制(CSMC)、反步控制器(BSC)和积分反步控制器(IBSC)等MPPT跟踪算法相比,所提出的控制方案具有较好的超调量、抖振和稳定时间较低的跟踪性能。最后,利用dSPACE DS 1104软件的实时结果表明,发电机PV可以准确地预测MPP,以及所建议的MPPT技术的有效性。通过与不同方法的综合比较,验证了该方法的有效性,BSSTAC的最高效率为99.88%。
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A direct backstepping super-twisting algorithm controller MPPT for a standalone PV storage system: design and real-time implementation
In this paper, we introduce a novel direct maximum power point tracking (MPPT) approach that combines the backstepping controller (BC) and the super-twisting algorithm (STA). The direct backstepping super-twisting algorithm control (BSSTAC) MPPT was developed to extract the maximum power point (MPP) produced by a photovoltaic (PV) generator connected to the battery through a boost dc-dc converter. To reduce the number of sensors required for the BSSTAC implementation, a high gain observer (HGO) was proposed to estimate the value of the state of the PV storage system from measurements of the PV generator voltage and current. The suggested technique is based on the quadratic Lyapunov function and does not employ a standard MPPT algorithm. Results show that the suggested control scheme has good tracking performance with reduced overshoot, chattering, and settling time as compared to the prevalent MPPT tracking algorithms such as perturb and observe (P&O), conventional sliding mode control (CSMC), backstepping controller (BSC), and integral backstepping controller (IBSC). Finally, real-time findings using the dSPACE DS 1104 software indicate that the generator PV can accurately forecast the MPP, as well as the efficacy of the suggested MPPT technique. The provided approach's effectiveness has been validated by a comprehensive comparison with different methods, resulting in the greatest efficiency of 99.88% for BSSTAC.
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来源期刊
CiteScore
5.00
自引率
26.10%
发文量
98
审稿时长
6.0 months
期刊介绍: The Journal of Solar Energy Engineering - Including Wind Energy and Building Energy Conservation - publishes research papers that contain original work of permanent interest in all areas of solar energy and energy conservation, as well as discussions of policy and regulatory issues that affect renewable energy technologies and their implementation. Papers that do not include original work, but nonetheless present quality analysis or incremental improvements to past work may be published as Technical Briefs. Review papers are accepted but should be discussed with the Editor prior to submission. The Journal also publishes a section called Solar Scenery that features photographs or graphical displays of significant new installations or research facilities.
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