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Evaluation of interface converters for natural energy transfer between small sources, storages and low-voltage DC grid: Simulation case

机译:对界面转换器进行界面转换器,用于小源,存储和低压DC网格的自然能量转换:仿真情况

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This paper deals with extremely distributed energy harvesting from individual PV cells and their small arrays that can easy be placed in convenient locations of an existing object and integrated into its natural infrastructure. With this approach energy is produced in places wherever it is possible and spend as close as possible to energy generation location. As an example, an office building is discussed where PV cell can be placed on the blades of vertical jalousies and naturally positioned against sun. A physical model of such system with small (120W) amount of PV cells, interface converters, solar tracker and low (12V) voltage lighting grid is presented. Different versions of PV connections and interfacing are analyzed. It is concluded that various configurations are applicable, but the groups producing voltage closer to 12V are more efficient.
机译:本文涉及从单独的PV电池和它们的小阵列进行极其分布式的能量收集,这些阵列可以容易地放置在现有物体的方便位置并集成到其天然基础设施中。通过这种方法,能量在可能的地方产生,尽可能接近能量发电位置。例如,讨论了办公楼,其中PV电池可以放置在垂直瓦屋的叶片上并自然地定位在阳光下。提出了一种具有小(120W)的PV电池,接口转换器,太阳能跟踪器和低(12V)电压照明网格的这种系统的物理模型。分析了不同版本的PV连接和接口。结论是,各种配置适用,但是靠近12V的电压的组更有效。

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