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Assessing the transferability of support vector machine model for estimation of global solar radiation from air temperature

机译:评估支持向量机模型在空气温度下估算全球太阳辐射的可转移性

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摘要

Exploring novel methods for estimation of global solar radiation from air temperature has been being a focus in many studies. This paper evaluates the transferability of support vector machines (SVM) for estimation of solar radiation in subtropical zone in China. Results suggest that solar radiation at one site (estimation site) could be well estimated by SVM model developed at another site (source site). The accuracy of estimation is affected by the distance and temperature difference between two sites, and altitude of source site. Higher correlations between RMSE of SVM and distance, and temperature differences are observed in northeastern region, increasing the reliability and confidence of SVM model developed at nearby stations. While lower correlations between RMSE and distance, and temperature differences are observed in southwest plateau region. When the altitude of estimation site is lower than 1200 m, RMSE show logarithm relationship with altitude of source sites where the altitude are lower than that of estimation site. Otherwise, RMSE show linearly relationship with altitude of source sites where the altitude are higher than 200 m but lower than that of the estimation site. This result suggests that solar radiation could be also estimated using SVM model developed at the site with similar but lower altitude. Based on these results, a strategy that takes into account the climatic conditions, topography, distance, and altitude for selecting a suitable source site is presented. The findings can guide and ease the appropriate choice of source sites for estimation of solar radiation at estimation site. (C) 2014 Elsevier Ltd. All rights reserved.
机译:探索从空气温度估算全球太阳辐射的新颖方法一直是许多研究的重点。本文评估了支持向量机(SVM)的可传递性,以估计中国亚热带地区的太阳辐射。结果表明,可以通过在另一站点(源站点)开发的SVM模型很好地估计一个站点(估计站点)的太阳辐射。估计的准确性受两个站点之间的距离和温度差以及源站点的高度的影响。在东北地区,SVM的RMSE与距离和温度差异之间的相关性更高,从而增加了在附近站点建立的SVM模型的可靠性和可信度。在西南高原地区,RMSE与距离和温度差之间的相关性较低。当估算地点的海拔高度低于1200 m时,RMSE与海拔低于估算地点的源地点的海拔高度呈对数关系。否则,RMSE与源站点的海拔高度呈线性关系,其中海拔高于200 m但低于估计站点的海拔。该结果表明,也可以使用在海拔相似但较低的地点开发的SVM模型来估算太阳辐射。基于这些结果,提出了一种考虑气候条件,地形,距离和海拔高度的策略,以选择合适的源站点。这些发现可以指导并简化为估算地点的太阳辐射估算所用的辐射源地点的适当选择。 (C)2014 Elsevier Ltd.保留所有权利。

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