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A flyback-type single phase utility interactive inverter with low-frequency ripple current reduction on the DC input for an AC photovoltaic module system

机译:交流光伏模块系统的直流输入上具有降低低频纹波电流的反激式单相公用事业交互式逆变器

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In recent years, interest in natural energy has grown because of increased environmental concerns. Many kinds of inverter circuits and their control schemes for photovoltaic (PV) power generation systems have been studied. In a conventional system, the PV array in which many PV modules are connected in series is used to obtain sufficient DC-bus voltage for generating an AC utility line voltage from an inverter circuit. However, the total power generation of the PV array is sometimes decreased remarkably when a few modules are partially covered by shadows, thereby decreasing its inherent current generation, and preventing the generation current attaining its maximum value on the array. To overcome this drawback, an AC module strategy has been proposed. In this system, a small power DC-AC utility interactive inverter is mounted on each PV module individually. This inverter operates so as to generate the maximum power from its corresponding PV module. This paper proposes a novel flyback-type utility interactive inverter circuit suitable for AC module systems. The features of the proposed system are that it: (1) is small in volume and lightweight; (2) allows stable AC current injection into the utility line; (3) enables the stable parallel operation without AC current sharing control; and (4) enables the capacitance of the DC capacitor to be small. The effectiveness of the proposed system is clarified through simulation and experiments.
机译:近年来,由于环境问题增加,对自然能源的兴趣已经发展。已经研究了许多种类的光伏电路和它们的光伏(PV)发电系统的控制方案。在传统系统中,使用许多PV模块串联连接的PV阵列来获得足够的直流母线电压,用于从逆变器电路产生AC电效率线电压。然而,当少数模块被阴影部分覆盖时,PV阵列的总电力产生有时会显着降低,从而降低其固有的电流产生,并防止在阵列上实现其最大值的生成电流。为了克服这一缺点,已经提出了交流模块策略。在该系统中,小型电源DC-AC实用程序交互式逆变器单独安装在每个PV模块上。该逆变器操作以便从其相应的PV模块产生最大功率。本文提出了一种适用于AC模块系统的新型反激式实用性交互式逆变器电路。所提出的系统的特点是:(1)体积小,重量轻; (2)允许稳定的AC电流注入效用线; (3)在没有交流电流共享控制的情况下实现稳定的并联操作; (4)使DC电容器的电容能够小。通过模拟和实验阐明了所提出的系统的有效性。

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