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Design of a Portable Photovoltaic I–V Curve Tracer Based on the DC–DC Converter Method

机译:基于DC-DC转换器方法的便携式光伏I-V曲线示踪器设计

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摘要

The I-V curve tracer is an instrument that captures the current-voltage characteristics of photovoltaic (PV) generators under real operating conditions. Such device can be used to evaluate their performance and identify faults or aging effects, but its high costs have prevented it from being widely used in the industry. This article thus proposes the design of a low-cost, portable I-V curve tracer based on the classic dc-dc Cuk converter for PV modules of up to 300 W. In order to obtain a compact device, some design techniques are proposed, including circuit reduction, high switching frequency operation, specification of the optimum load resistor power rating, and improved measurement distribution because of a nonlinear duty cycle variation. Experimental curves were compared with those acquired from commercial PV tracers to demonstrate its accuracy. In addition, the physical parameters of the well-known single-diode model have been extracted and compared with data provided by manufacturers to identify aging effects and module performance.
机译:I-V曲线示踪剂是一种仪器,可在实际操作条件下捕获光伏(PV)发电机的电流 - 电压特性。这种装置可用于评估它们的性能并识别故障或老化效果,但其高成本阻止了其在业内广泛使用。因此,本文提出了基于高达300W的PV模块的经典DC-DC CUK转换器的低成本的便携式IV曲线示踪器的设计。为了获得紧凑的装置,提出了一些设计技术,包括电路减少,高开关频率操作,最佳负载电阻功率额定值的规格,以及由于非线性占空比变化而改善的测量分布。将实验曲线与商业光伏示踪剂获得的那些进行比较,以证明其精度。此外,已经提取了众所周知的单二极管模型的物理参数,并将其与制造商提供的数据进行比较,以识别老化效果和模块性能。

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