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Improving the prediction performance of the finite element model for estimating the technical performance of the distributed generation of solar power system in a building fagade

机译:改善有限元模型的预测性能,以估算建筑立面上的分布式太阳能发电系统的技术性能

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摘要

As interest in the distributed generation of solar power system in a building facade continues to increase, its technical performance (i.e. the amount of electricity generation) should be carefully investigated before its implementation. In this regard, this study aimed to develop the nine-node-based finite element model for estimating the technical performance of the distributed generation of solar power system in a building facade (FEM9-node),focusing on the improvement of the prediction performance. The developed model (FEM9-node) was proven to be superior to the four-node-based model (FEM4-node), which was developed in the previous study, in terms of both prediction accuracy and standard deviation. In other words, the prediction accuracy (3.55%) and standard deviation (2.93%) of the developed model (FEM9-node) was determined to be superior to those of the previous model (FEM4-node) (i.e. 4.54% and 4.39%, respectively). The practical application was carried out to enable a decision maker (e.g. construction manager, facility manager) to understand how the developed model works in a clear way. It is expected that the developed model (FEM9-node) can be used in the early design phase in an easy way within a short time. In addition, it could be extended to any other countries in a global environment.
机译:随着人们对建筑物立面中分布式太阳能发电系统的兴趣不断增加,应在实施之前仔细研究其技术性能(即发电量)。在这方面,本研究旨在开发基于九节点的有限元模型,以评估建筑物外立面(FEM9节点)中分布式太阳能发电系统的技术性能,重点是提高预测性能。事实证明,所开发的模型(FEM9节点)在预测准确性和标准偏差方面都优于先前研究中开发的基于四节点的模型(FEM4节点)。换句话说,已开发模型(FEM9节点)的预测准确性(3.55%)和标准偏差(2.93%)被确定为优于先前模型(FEM4节点)的预测准确性(即4.54%和4.39%) , 分别)。进行了实际应用,以使决策者(例如,施工经理,设施经理)了解所开发模型如何以清晰的方式工作。预期开发的模型(FEM9节点)可以在短时间内以简便的方式用于早期设计阶段。此外,它可以扩展到全球环境中的任何其他国家。

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