首页> 外文期刊>E3S Web of Conferences >Modeling of Photovoltaic MPPT Lead Acid Battery Charge Controller for Standalone System Applications
【24h】

Modeling of Photovoltaic MPPT Lead Acid Battery Charge Controller for Standalone System Applications

机译:用于独立系统应用的光伏MPPT铅酸电池充电控制器的建模

获取原文
       

摘要

This paper presents the circuitry modeling of the solar photovoltaic MPPT lead-acid battery charge controller for the standalone system in MATLAB/Simulink environment. A buck topology is utilized as a DC-DC converter for the charge controller implementation. The maximum power of the photovoltaic panel is tracked by the Perturb and Observe MPPT algorithm. The battery charge controller charges the lead-acid battery using a three-stage charging strategy. The three charging stages include the MPPT bulk charge, constant voltage absorption charge, and float charge stage. The performance analysis of the model is carried out in the following aspects, there are MPPT tracking performance, battery charging performance and overall charge controller efficiency performance are benchmarked with commercial MPPT charge controller for validation. The performance result shows that the MPPT is capable to track to the PV panel maximum point at any solar irradiance variation within 0.5 seconds with maximum power tracking efficiency up to 99.9 %. The three-stage charging strategy also successfully demonstrated. The overall charge controller average efficiency achieved up to 98.3 % which matches many high end commercial solar PV MPPT charge controller product specifications. This validated model contributes to a better sizing of PV panel and battery energy storage for the small and medium standalone PV system.
机译:本文介绍了Matlab / Simulink环境中的独立系统太阳能光伏MPPT铅酸蓄电池电荷控制器的电路建模。降压拓扑用作充电控制器实现的DC-DC转换器。通过扰动和观察MPPT算法跟踪光伏面板的最大功率。电池充电控制器使用三级充电策略对铅酸电池充电。三个充电阶段包括MPPT散装电荷,恒压吸收电荷和浮动电荷级。模型的性能分析在以下几个方面进行了,存在MPPT跟踪性能,电池充电性能和总电荷控制器效率性能与商业MPPT充电控制器有用于验证的基准测试。性能结果表明,MPPT能够在0.5秒内的任何太阳辐照度变化下跟踪PV面板最大点,最大功率跟踪效率高达99.9%。三阶段收费策略也成功地证明。总电荷控制器平均效率可达高达98.3%,符合许多高端商业太阳能光伏电阻充电控制器产品规格。该验证的模型有助于更好的光伏面板和用于中小型独立光伏系统的电池储能的尺寸。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号