用于光伏仿真器的Buck变换器设计

R. Ayop, Chee Wei Tan, S. N. Syed Nasir, K. Y. Lau, Chuen Ling Toh
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引用次数: 3

摘要

光伏仿真器(PV simulator, PVE)可以有效地对光伏设备和系统进行开发和测试。PVE是一种替代可控光源的方法,需要很大的空间,效率很低。PVE需要一个功率转换器,由于控制简单,效率高,首选降压转换器。尽管如此,由于PVE的输出电压高度依赖于输出电阻,因此不能使用传统的降压转换器设计。需要为PVE应用指定适当的降压转换器设计,以保持连续电流模式工作,并使输出电压纹波系数低于所需的规格。提出了基于降压变换器的PVE无源器件的设计方案,包括输出电阻、电感和电容。采用单二极管模型得到了PV的电流-电阻特性曲线。本文不包括PVE的控制策略。结果表明,推导得到的buck变换器无源元件在作为PVE工作时能够保持连续电流模式,且输出电压纹波因数低于期望规格。这证明无源分量的推导是准确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Buck Converter Design for Photovoltaic Emulator Application
Photovoltaic (PV) emulator (PVE) allows the development and testing of the PV equipment and system effectively. The PVE is an alternative to controllable light source that requires a large space and highly inefficient. The PVE requires a power converter and the buck converter is preferred due to the control simplicity and high efficiency. Nonetheless, the conventional design of the buck converter cannot be used since the output voltage of the PVE highly dependent on the output resistance. A proper design of the buck converter specified for the PVE application is needed to maintain continuous current mode operation and the output voltage ripple factor below the desired specification. This paper proposed the design for the passive components for the PVE using buck converter, which includes the output resistor, inductor, and capacitor. The single diode model is used to produce the current-resistance characteristic curves of the PV. The control strategy of the PVE is not included in this paper. The results show that the passive components for the buck converter obtained from the derivation able to maintain continuous current mode and has the output voltage ripple factor lower than the desired specification when operates as the PVE. This proves the derivation of the passive components is accurate.
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