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Design optimization of photovoltaic arrays on curved surfaces

机译:弯曲表面光伏阵列的设计优化

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Flexible photovoltaic (PV) arrays often have to be mounted on surfaces that have a significant amount of curvature. These include solar-powered vehicles, planes, and also some wearable devices. However, this inevitably leads to non-uniform solar irradiance among connected PV cells. If one cell among series-connected PV cells receives significantly lower solar irradiance, the overall power generation of the string is reduced. While previous works dealt with this by employing sophisticated run-time techniques, we show that design-time approaches that determine the electrical series-parallel connection of a PV array could also significantly enhance the power output. In this paper, we propose a k-means clustering-based algorithm to group PV cells/modules with similar solar irradiance to form a PV string, even allowing irregular arrays, to maximize the power generation of the array for a given irradiance profile. Our experimental results show that the power generation of a PV array could be increased by 84% compared to usual PV array organizations that do not take the curvature of the mounted surface into account.
机译:柔性光伏(PV)阵列通常必须安装在具有大量曲率的表面上。这些包括太阳能动力车辆,平面,以及一些可穿戴设备。然而,这不可避免地导致连接的光伏电池之间的非均匀太阳辐照度。如果串联连接的PV电池之间的一个单元接收到显着较低的太阳辐照度,则串的整体发电量减少。虽然以前的作品通过采用复杂的运行时间技术处理了这一点,但我们表明确定PV阵列的电串联连接的设计 - 时间方法也可以显着提高功率输出。在本文中,我们提出了一种基于K-Means聚类的算法,以对具有类似太阳辐照度的PV电池/模块来形成PV串,甚至允许不规则阵列,以最大化给定的辐照曲线的阵列的发电。我们的实验结果表明,与常用的光伏阵列组织相比,PV阵列的发电可以增加84 %,这些组织不考虑安装的表面曲率的曲率。

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