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Development of a High Granularity Photovoltaic Model That Considers Complex Nonuniform Shadow Conditions and Different Cell Temperatures

机译:开发高粒度光伏模型,其考虑复杂的非均匀阴影条件和不同细胞温度

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In this paper is the development of a high granularity photovoltaic model that considers complex nonuniform shadow conditions and different cell temperatures. The model integrates the nonuniform shading characteristics such as different areas for each cell, different direct and indirect solar irradiations for each cell, and different temperatures. The area of the shadow on the PV module is found using image processing. The bond graph formalism facilitates the representation of the energy exchange between the different parts of the PV module. This complexity justifies the effort to develop a high-granularity tool. The proposed model is validated through experimental tests under shading conditions. This work is based on previous works by the authors as Garcia-Gutierrez (Developpement d'un controle actif tolerant aux defaillances applique aux systemes pv, Mar 2019 [Online].Theses, Universite Toulouse 3 Paul Sabatier (UT3 Paul Sabatier), Mar 2019 [Online].In: Electrimacs 2019, Palerme, May 2019 [Online].In: 2018 7th international conference on renewable energy research and applications (ICRERA), 2018, pp 275-280).
机译:本文是开发高粒度光伏模型,其考虑复杂的非均匀阴影条件和不同的细胞温度。该模型集成了非均匀的阴影特性,例如每个单元的不同区域,对每个单元的不同直接和间接太阳照射,以及不同的温度。使用图像处理找到光伏模块上的阴影区域。债券图形式主义有助于光伏模块的不同部位之间的能量交换的表示。这种复杂性证明了开发高粒度工具的努力。通过遮阳条件下的实验测试验证所提出的模型。这项工作基于以前的作品作为Garcia-Gutierrez(Developpement D'Un Controly Actif Poolerant Aux Defaillances PV,2019年3月[在线] .theses,Universite图卢兹3 Paul Sabatier(UT3 Paul Sabatier),2019年3月[在线]。在2019年,2019年5月,2019年[在线]。

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