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A hierarchical architecture for increasing efficiency of large photovoltaic plants under non-homogeneous solar irradiation

机译:一种用于提高非均匀太阳辐射下大型光伏电站效率的分层体系结构

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摘要

Under non-homogeneous solar irradiation, photovoltaic (PV) panels receive different solar irradiance, resulting in a decrease in efficiency of the PV generation system. There are a few technical options to fix this issue that goes under the name of mismatch. One of these is the reconfiguration of the PV generation system, namely changing the connections of the PV panels from the initial configuration to the optimal one. Such technique has been widely considered for small systems, due to the excessive number of required switches. In this paper, the authors propose a new method for increasing the efficiency of large PV systems under non-homogeneous solar irradiation using Series-Parallel (SP) topology.In the first part of the paper, the authors propose a method containing two key points: a switching matrix to change the connection of PV panels based on SP topology and the proof that the SP-based reconfiguration method can increase the efficiency of the photovoltaic system up to 50%.In the second part, the authors propose the extension of the method proposed in the first part to improve the efficiency of large solar generation systems by means of a two-levels architecture to minimize the cost of fabrication of the switching matrix.
机译:在不均匀的太阳辐射下,光伏(PV)面板接收不同的太阳辐照度,从而导致PV发电系统的效率下降。在不匹配的名称下,有一些技术选项可以解决此问题。其中之一是光伏发电系统的重新配置,即将光伏面板的连接从初始配置更改为最佳配置。由于所需的开关数量过多,这种技术已被广泛用于小型系统。本文提出了一种利用串联并联(SP)拓扑结构在不均匀太阳辐射下提高大型光伏系统效率的新方法。在本文的第一部分,作者提出了一种包含两个关键点的方法。 :基于SP拓扑的切换矩阵,用于改变光伏电池板的连接,并证明基于SP的重新配置方法可以将光伏系统的效率提高多达50%。第二部分,作者建议扩展第一部分中提出的一种方法,通过两级体系结构来提高大型太阳能发电系统的效率,以最大程度地降低开关矩阵的制造成本。

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