Low complexity system for real-time determination of current-voltage characteristic of PV modules and strings

N. Lima, L. D. de Freitas, G. M. Buiatti, J. Vieira, L. Freitas, E. Coelho
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引用次数: 11

Abstract

This paper presents a low complexity system for characterizing Photovoltaic (PV) modules and strings in real-time, allowing accurate measurements and analysis of the actual power production of PV systems in real operation conditions. Applicability of this characterization system is in the real-time condition monitoring of such PV systems when suitable algorithms that make use of such current-voltage information (here in called I-V curve) are applied. For this purpose, a classical Boost converter is used operating as a controlled electronic load. The I-V points obtained from the load variation between the electrical terminals of the PV module or string are used to trace the whole I-V curve. The values obtained by the proposed system are compared with reference values obtained through a high accuracy I-V curve tracer available in the market, in order to validate the accuracy of the here proposed characterization system. The availability of such data makes possible to identify the presence of partial shadows that may lead to more than one local and global Maximum Power Point (MPP). It is even possible to quantify the power loss production that might raise-up due to the shadow presence, depending on Maximum Power Point Tracking (MPPT) algorithm adopted by the power converter between the PV strings and the grid or load connected to the latter one.
用于实时测定光伏组件和串电流-电压特性的低复杂度系统
本文提出了一种低复杂度的系统,用于实时表征光伏组件和串,可以准确测量和分析光伏系统在实际运行条件下的实际发电量。该表征系统的适用性是在光伏系统的实时状态监测中,使用合适的算法,利用这些电流-电压信息(这里称为I-V曲线)。为此,使用经典升压变换器作为受控电子负载工作。利用光伏组件或串的电气端子之间的负载变化得到的I-V点来跟踪整个I-V曲线。将所提出的系统获得的值与通过市场上可用的高精度I-V曲线示踪剂获得的参考值进行比较,以验证本文所提出的表征系统的准确性。这些数据的可用性使识别可能导致多个局部和全局最大功率点(MPP)的部分阴影的存在成为可能。甚至可以根据光伏串与电网或连接到后者的负载之间的功率转换器采用的最大功率点跟踪(MPPT)算法,量化由于阴影存在而可能增加的功率损耗。
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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