Influence of power converters on PV maximum power point tracking efficiency

R. Coelho, W. Santos, D. Martins
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引用次数: 55

Abstract

Photovoltaic maximum power point tracker (MPPT) systems are commonly employed to maximize the photovoltaic output power, since it is strongly affected in accordance to the incident solar radiation, surface temperature and load-type changes. Basically, a MPPT system consists on a dc-dc converter (hardware) controlled by a tracking algorithm (software) and the combination of both, hardware and software, defines the tracking efficiency. This paper shows that even when the most accurate algorithm is employed, the maximum power point cannot be found, since its imposition as operation point depends on the dc-dc converter static feature and the load-type connected to the system output. For validating the concept, the main dc-dc converters, i.e., Boost, Buck-Boost, Cuk, SEPIC and Zeta are analyzed considering two load-types: resistive voltage regulated dc bus. Simulation and experimental results are included for validating the theoretical analysis.
电源变流器对光伏最大功率点跟踪效率的影响
光伏最大功率点跟踪系统(MPPT)受入射太阳辐射、地表温度和负载类型变化的影响较大,通常采用光伏最大功率点跟踪系统来实现光伏输出功率的最大化。基本上,MPPT系统由一个由跟踪算法(软件)控制的dc-dc转换器(硬件)组成,硬件和软件的结合定义了跟踪效率。本文表明,即使采用最精确的算法,也无法找到最大功率点,因为其作为工作点取决于dc-dc变换器的静态特性和连接到系统输出的负载类型。为了验证这一概念,主要的dc-dc转换器,即Boost, Buck-Boost, Cuk, SEPIC和Zeta考虑两种负载类型:电阻稳压直流母线。仿真和实验结果验证了理论分析的正确性。
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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