An Improved Adaptable Step-Size P&O MPPT Approach for Stand-Alone PV Systems with Battery Station

Abdelkhalek Chellakhi, S. E. Beid, Y. Abouelmahjoub
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引用次数: 1

Abstract

This study proposes and discusses a single-stage off-grid PV system to supply power to DC loads. A single-buck converter interfaces a 2 kW PV array and DC load and ensures a good operation of the maximum power point tracking (MMPT) and battery charge control, simultaneously. For the MPPT side, an improved adaptable step size P&O approach is suggested to reach the real maximum power point (MPP) of the solar PV array under varying weather conditions with reduced steady-state oscillation and less power loss. Furthermore, a three-stage charging controller (TSCC) is used in the battery charge control side to charge a 200 Ah lead-acid battery. MATLAB/Simulink environment tool is used for the implementation of the overall PV system. The simulation results under different scenarios of weather conditions prove the highest tracking performances of the improved approach over the conventional P&O method. In this respect, the developed P&O approach can capture the MPP in a time less than 2 milliseconds, which is 10 times faster than the conventional P&O method. In addition, it can mitigate the power losses and reduce the oscillations around the MPP to half compared with the basic P&O method. Furthermore, the improved P&O approach with TSCC can significantly enhance the BS charging operation with good stability in the output power, voltage, and current of the battery.
带电池站的独立光伏系统的改进自适应步长P&O MPPT方法
本研究提出并讨论了一种单级离网光伏系统,为直流负荷供电。单降压转换器连接2kw的光伏阵列和直流负载,并确保最大功率点跟踪(MMPT)和电池充电控制同时良好运行。对于最大功率点,提出了一种改进的自适应步长P&O方法,以在不同天气条件下达到太阳能光伏阵列的实际最大功率点(MPP),同时减少稳态振荡和功率损耗。此外,在电池充电控制侧使用三级充电控制器(TSCC)对200 Ah的铅酸电池进行充电。采用MATLAB/Simulink环境工具对整个光伏系统进行了实现。在不同天气条件下的仿真结果表明,改进后的方法比传统的P&O方法具有最高的跟踪性能。在这方面,开发的P&O方法可以在不到2毫秒的时间内捕获MPP,比传统的P&O方法快10倍。此外,与基本的P&O方法相比,它可以减少功率损耗,并将MPP周围的振荡减少一半。此外,采用TSCC改进的P&O方法可以显著增强BS充电操作,并且电池的输出功率、电压和电流具有良好的稳定性。
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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