用于休闲车的多类型混合连接光伏发电系统的功率优化

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC World Electric Vehicle Journal Pub Date : 2024-03-22 DOI:10.3390/wevj15040125
DaiBin Tang, F. Siaw, Tzer Hwai Gilbert Thio
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引用次数: 0

摘要

利用光伏(PV)发电为休闲车(RV)中的蓄电池充电正变得越来越普遍。然而,不同模块类型和不同环境条件造成的不匹配阻碍了光伏发电系统的性能。这种差异对光伏模块的输出性能产生了负面影响,导致系统效率降低。针对这一问题,本文探讨了不同类型光伏组件的串并联输出特性,并总结了混合结构光伏发电系统中光伏组件的配置方法,以实现 RV 能源补充。在此基础上,介绍了一种基于极值寻优控制(ESC)的新型均衡方案。该方案首先采用正反向转换器(FFC)来均衡串联光伏组件之间的电流,然后匹配并联光伏组件串之间的电压。最后,利用 ESC 优化光伏发电系统的实时输出功率,从而提高整个系统的效率。利用 PLECS 仿真平台,通过对带有四种混合连接光伏模块的光伏发电系统进行仿真实验,仿真结果证明了所提方案在改善光伏模块输出性能和最大功率跟踪效率方面的有效性。仿真数据显示,拟议方案的平均跟踪效率达到了惊人的 99.15%,超过了基于增强型扰动和观测算法的全局最大功率点跟踪方案的效率。
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Power Optimization of Multi-Type Mixed-Connection Photovoltaic Generation System for Recreational Vehicles
The utilization of photovoltaic (PV) generation to charge storage batteries in recreational vehicles (RVs) is becoming increasingly prevalent. However, the performance of PV generation systems is hindered by the mismatch caused by different module types and varying environmental conditions. This discrepancy negatively impacts the output performance of PV modules, resulting in reduced system efficiency. To address this issue, this paper explored the series–parallel output characteristics of different types of PV modules and summarized the methods for configuring PV modules in a mixed-structure PV generation system for RV energy supplementation. Building upon this foundation, a novel equalization scheme based on extremum-seeking control (ESC) is introduced. The scheme initially employs a forward–flyback converter (FFC) to equalize the current among series-connected PV modules, followed by matching the voltage between parallel-connected PV module strings. Finally, the ESC is utilized to optimize the real-time output power of the PV generation system, thereby enhancing overall system efficiency. Through simulation experiments conducted on a PV generation system with four types of mixed-connection PV modules employing the PLECS simulation platform, simulated results demonstrate the effectiveness of the proposed scheme in improving PV module output performance and maximum power tracking efficiency. The simulation data reveal that the proposed scheme achieves an impressive average tracking efficiency of 99.15%, surpassing the efficiency of the global maximum power point tracking scheme based on an enhanced perturb and observe algorithm.
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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
期刊最新文献
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