一种用于直流纳米电网的多输入单控制电池充电器

S. Arun, S. Nag, S. Mishra
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引用次数: 8

摘要

可再生能源和存储使得基于直流的家庭配电成为未来家庭的一个有吸引力的选择。由于该系统的额定功率较低,因此减少变流器级数和有效利用产生的能量是非常重要的。因此,本文提出了一种具有多个输入的单级升压转换器,可以有效地抽取产生的能量为电池充电,而不是使用来自各种单向可再生能源的不同专用转换器。当一些额外的能源不够大,不能使用专用的转换器时,这种将可再生能源连接起来的理念将具有商业价值。该转换器称为多输入单控制(MISC)转换器。转换器根据最大电源(例如,太阳能电池板的MPP)的最佳运行来改变占空比,其中其他较小的单向源作为从属源。根据源的特性,本文讨论了所提出的变换器在各种工作模式下的工作。该概念使用实验室原型进行了不同操作场景的验证,其中太阳能电池板作为在MPPT下工作的主源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multi-Input Single-Control (MISC) battery charger for DC nanogrids
Renewable power and storage have made DC based domestic distribution an attractive alternative for future homes. Due to low power rating of the system, it is very important to reduce number of converter stages and use the generated energy efficiently. Therefore, instead of using different dedicated converters from various uni-directional renewable sources, this paper proposes a single stage boost converter with multiple inputs that can efficiently decimate generated energy to charge a battery. This philosophy of interfacing renewable sources will have commercial value when some of the additional sources are not large enough to mandate a dedicated converter. The converter is called Multi-Input-Single Control (MISC) converter. The converter varies the duty cycle based on optimum operation of the largest power source (e.g., MPP in case of solar panel), where as the other smaller unidirectional sources act as slave. As per the characteristic of the source, the proposed converter works under various operating modes which are discussed in this paper. The concept is validated using a laboratory prototype for different operating scenarios with a solar panel as a master source working under MPPT.
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