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POST INSTALLATION OPTIMISATION OF A BUILDING INTEGRATED PV SYSTEM AT SOUTHAMPTON UNIVERSITY

机译:南安普敦大学建筑集成光伏系统安装优化

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The deployment of building integrated photovoltaics in the urban environment represents an opportunity for energy production and use at source. It also has a positive impact on expanding the market for photovoltaics resulting in reduction in cell and systems costs. An example of such a system is the subject of this paper. The operation of the photovoltaic facade installed at Southampton University is constantly monitored. In addition to system energy yields, the mismatch losses, notably at low irradiance levels and during periods of shading, were measured and evaluated. The determination of the operational characteristic of each string in the array is critical in identifying the interactions that may occur between strings, and the resultant degrading effect on system performance. The results indicate that the original design configuration of the strings of the array, determined as the optimal from theoretical and conventional principles, is not the most efficient. After optimisation of the connection characteristics of the 24 strings in the array, an increase of 8% in system efficiency was achieved.
机译:在城市环境中建立集成光伏的部署代表了能源生产和在来源的机会。它对扩展光伏市场产生了积极影响,导致细胞和系统成本降低。这种系统的一个例子是本文的主题。安装在南安普顿大学的光伏立面的运行不断受到监测。除了系统能量产率之外,测量并评估了不匹配损失,特别是在低辐照度水平和阴影期间的损失。确定阵列中每个字符串的操作特性在识别串之间可能发生的交互以及对系统性能的结果的劣化影响至关重要。结果表明,阵列的串的原始设计配置确定为理论和传统原理的最佳原理,是最有效的。在优化阵列中的24个串的连接特性之后,实现了系统效率的8%。

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