基于同步降压变换器的便携式低功耗智能光伏能源系统的设计与实现

B. Babu, Sriharsha, M. Kumar, Nikhil Saroagi, S. Samantaray
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引用次数: 16

摘要

本文研究了基于同步降压变换器的便携式光伏能源系统,特别是低功率设备如手机电池充电的应用。本文所采用的变换器拓扑结构采用软开关技术,降低了传统降压变换器的开关损耗,从而提高了系统效率,减少了mosfet由于开关损耗而产生的发热,延长了mosfet的使用寿命。从光伏阵列中提取的直流功率由变流器合成和调制以适应负载要求。在此基础上,研究了一种利用控制器调节电池电压和电流而不过热的充电方法。因此,采用软开关技术可以提高充电效率。此外,所开发的系统具有元件数量少、性价比高、可移植性强等优点。在MATLAB-Simulink环境下对所提出的系统进行了仿真,并对所提出的转换器进行了实际实现,以验证理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Low Power Smart PV Energy System for Portable Applications Using Synchronous Buck Converter
In this paper, synchronous buck converter based PV energy system for portable applications, especially low power device applications such as charging mobile phone batteries are considered. The converter topology used here is soft switching technique to reduce the switching losses which is found prominently in the conventional buck converter, thus efficiency of the system is improved and the heating of MOSFETs due to switching losses reduce and the MOSFETs have a longer life. The dc power extracted from the PV array is synthesized and modulated by the converter to suit the load requirements. Further, a charging method is studied with controller to regulate the battery voltage and current without overheating. As a result, the charging efficiency can be improved by soft switching technique. Besides, the performance is obtained less number of components and the developed system is cost effective and highly portable. The proposed system is simulated in the MATLAB-Simulink environment and the practical implementation of the proposed converter is done to validate the theoretical results.
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