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Grid-Connected Photovoltaic Systems with Single-Axis Sun Tracker: Case Study for Central Vietnam

机译:具有单轴太阳跟踪器的网格连接的光伏系统:越南中部的案例研究

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摘要

Recently, the demand for small grid-connected photovoltaic (PV) systems has been rapidly increasing; this is due to the reduction in the costs of grid-connected storage systems as compared to those of the stand-alone ones. Notably, the performance of the solar tracking system is not only depending on the types but also the region that they are set up and used. To understand how solar tracking systems work globally, we need to know their performance in each country and even the different parts of a country. In this study, two grid-connected PV systems with 250 W solar modules were used to investigate the efficient improvement of a single-axis sun tracking system in Central Vietnam. First, a mechanical tracking device with a linear actuator and a controller was designed and then its performance was comprehensively investigated with a grid-connected PV system. In addition to evaluating the energy gain by the tracking system, this study also considered the energy consumption of the linear actuator with its controller and a small grid-connected PV system; this has generally been omitted in previous works. Experimental results indicate that the total energy consumption of the tracking system was approximately 2−8% of the energy generated by the grid-connected PV system. The maximum overall energy generation was confirmed to have increased by up to 30.3% on a sunny day upon using the proposed tracking system; further, the net energy gain by using the sun tracker was ascertained to be 15.2% in average weather conditions. Based on the success of this work, we will keep experimenting with other parts of Vietnam. Also, we will collaborate with colleagues in other countries to create a guideline for understanding and using the solar tracker regionally and globally.
机译:最近,对小电网连接的光伏(PV)系统的需求迅速增加;这是由于与独立的存储系统相比的网格连接存储系统的成本降低。值得注意的是,太阳能跟踪系统的性能不仅取决于类型,而且是它们被设置和使用的区域。要了解太阳能跟踪系统如何全球工作,我们需要在每个国家甚至国家的不同部分时才需要了解他们的表现。在本研究中,使用具有250W太阳能模块的两个电网连接的PV系统来研究越南中部单轴太阳跟踪系统的有效改进。首先,设计具有线性致动器和控制器的机械跟踪装置,然后用网格连接的光伏系统综合研究其性能。除了评估跟踪系统的能量增益之外,该研究还考虑了线性执行器的能量消耗,其控制器和小的网格连接的光伏系统;这通常在以前的作品中省略了这一点。实验结果表明,跟踪系统的总能耗约为电网连接的光伏系统产生的能量的2-8%。在使用所提出的跟踪系统时,确认最大的整体能量产生在阳光灿烂的日子里,在阳光灿烂的日子里增加了高达30.3%的人;此外,通过使用Sun跟踪器的净能量增益被确定为平均天气条件下的15.2%。根据这项工作的成功,我们将继续尝试越南的其他地区。此外,我们将与其他国家的同事合作,创建理解和在区域和全球范围内使用太阳能追踪器的指导。

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