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Thermal modeling of the module integrated DC-DC converter for flexible thin-film PV modules

机译:用于柔性薄膜PV模块的模块集成DC-DC转换器的热建模

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Recently there is a trend in PV systems toward a more granular processing of the PV array power by means of distributed maximum power point tracking (DMPPT). This is achieved by connecting a DC-DC converter to each PV module in a PV system and thus performing power processing on a module level as opposed to centralized power processing in traditional PV system architectures. In order to decrease the manufacturing costs and to improve the level of integration, the converter can be directly integrated into the PV module. This on the other hand brings tight thermal coupling between the PV module and the integrated converter and introduces additional heat to the PV module which may deteriorate its performance. It is therefore important to model the thermal behavior of the system in order to estimate reached temperatures and to test the effectiveness of different converter thermal management strategies. This paper presents an investigation into the thermal behavior of a DC-DC converter integrated into a flexible PV module. The goal of this work is to develop analytical thermal models of the PV module and the integrated converter that will allow to quickly predict the reached system temperatures for a set of PV module and converter specifications and boundary conditions. Finally, the results obtained from the developed thermal models show satisfying accuracy when compared to the experimental results and the results obtained using computational fluid dynamics (CFD) simulations.
机译:最近,PV系统的趋势通过分布的最大功率点跟踪(DMPPT)朝向PV阵列功率的更粒度处理。这是通过将DC-DC转换器连接到PV系统中的每个PV模块来实现的,从而在模块级执行电力处理,而不是传统的PV系统架构中的集中功率处理。为了降低制造成本并提高集成水平,转换器可以直接集成到PV模块中。另一方面,它在PV模块和集成转换器之间带来紧密热耦合,并向光伏模块引入额外的热量,这可能会降低其性能。因此,重要的是要模拟系统的热行为,以估计达到温度并测试不同转换器热管理策略的有效性。本文提出了集成到柔性PV模块中的DC-DC转换器的热行为的研究。这项工作的目标是开发PV模块和集成转换器的分析热模型,允许快速预测一组PV模块和转换器规格和边界条件的达到的系统温度。最后,与实验结果相比,从开发的热模型获得的结果表明了满足精度,并且使用计算流体动力学(CFD)模拟获得的结果。

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