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Statistical properties of clear and dark duration lengths

机译:明暗持续时间长度的统计属性

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摘要

The focus of this study is on the properties of consecutive intervals consisting of pairs of clear periods (the Sun is shining) and dark periods (the Sun is obscured by clouds). Namely, the distribution of the duration length of clear and dark periods is studied and illustrated with results obtained for the climatic regime of Timisoara (Romania, Eastern Europe). Usual simple moment-based characteristics such as means and variances cannot be unambiguously estimated due to censoring. Seasonal changes in the length distributions have been studied through the (nonparametric) Kaplan-Meier estimates. Both dark and clear duration distributions are different among months. The correlation between clear and dark periods within one dark-clear pair is of substantial interest. Therefore, a rigorous approach based on Spearman's rank correlation coefficient is used instead. The dependence of duration distribution upon covariates is studied using the Cox regression model, which fits the hazard ratio incurred by a unit change in the explanatory variables. It is shown that increasing the extraterrestrial irradiance on horizontal surface and the clearness index during dark/clear periods increases significantly the dark/clear period end risk. The Cox regression model enables more complicated analyses, such as the non-additive effects (i.e. interactions) of several covariates. The clearness index of a dark period (CID) has a much stronger effect than the extraterrestrial irradiance on horizontal surface of a dark period (EID) and the CID-EID interaction is still significant after the interactions when the months are included. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的重点在于连续间隔的属性,该间隔由成对的晴期(太阳在照耀)和阴暗周期(太阳被云遮盖)组成。即,研究了明暗时段的持续时间长度的分布,并用蒂米什瓦拉(罗马尼亚,东欧)的气候状况获得了结果。通常,基于简单的基于矩的基于时间的特征(例如均值和方差)不会由于审查而得到明确估计。通过(非参数)Kaplan-Meier估计研究了长度分布的季节性变化。不同月份的阴暗持续时间分布都不同。一对暗-清对中的暗和暗周期之间的相关性引起了人们的极大兴趣。因此,取而代之的是使用基于Spearman秩相关系数的严格方法。使用Cox回归模型研究持续时间分布对协变量的依赖性,该模型拟合了解释变量的单位变化引起的危险比。结果表明,在黑暗/晴朗期间,增加水平面上的地面辐射和清除指数会显着增加黑暗/晴朗期间的终端风险。 Cox回归模型可进行更复杂的分析,例如几个协变量的非累加效应(即相互作用)。暗期(CID)的清晰度指数比暗期(EID)的水平表面上的地外辐射具有更强的作用,并且当包括月份在内时,在交互作用之后CID-EID交互作用仍然显着。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2017年第9期|508-518|共11页
  • 作者单位

    Acad Sci Czech Republ, Inst Comp Sci, Dept Nonlinear Modeling, Pod Vodarenskou Vezi 2, Prague 18207 8, Czech Republic|Czech Tech Univ, Czech Inst Informat Robot & Cybernet, Zikova 1903-4, Prague 16636 6, Czech Republic;

    West Univ Timisoara, Phys Dept, V Parvan 4, Timisoara 300223, Romania;

    Polytech Univ, Candida Oancea Inst, Spl Independentei 313, Bucharest 060042, Romania|Romanian Acad, Calea Victoriei 125, Bucharest, Romania;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sunshine duration; Clouds; Solar irradiance; Statistical lifetime modeling; Cox regression; Censored data;

    机译:日照时数;云;太阳辐照度;统计寿命建模;Cox回归;删失数据;

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