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Optimal solar tracking strategy to increase irradiance in the plane of array under cloudy conditions: A study across Europe

机译:最佳的太阳跟踪策略以增加多云条件下阵列平面的辐照度:整个欧洲的一项研究

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摘要

In this study, we have performed an analysis of potential irradiation increase across Europe, derived from moving photovoltaic (PV) modules to a horizontal position during cloudy and overcast situations. The motivation of research is that PV technology has expanded outside countries endowed with high solar irradiation and it is nowadays present in high-latitude regions and areas with frequent cloud cover. Unlike concentrating solar technologies, PV panels can make use of both beam and diffuse irradiance. During cloudy or overcast situations, most of solar irradiance comes from the diffuse component, which approaches an isotropic behavior under those circumstances. Then, a PV panel facing the zenith would receive more irradiation than a PV panel following the Sun's path.& para;& para;In our approach, we have used data from several Baseline Surface Radiation Network stations. Results showed a yearly potential irradiation increase of 3.01% with respect to a reference single-axis tracking system (SATS) in the northern-most station. Values for other stations were correlated to climate. Thus, the sunniest station would increase its annual irradiation by 0.16% compared to a reference SATS. Daily irradiation increases of up to 19.91% were registered.& para;& para;Two predictive models were created to develop a SATS, which could determine in advance the optimum position of PV panels. Model 1, which was based on the persistence of irradiance, was designed to work real time in order to increase production. Yearly gains of up to 2.51% of irradiation were registered. However, Model 2 was developed to update production forecasts in the intra-day electricity markets so that PV plant owners can maximize their revenues. It is based on irradiance predictions from a numerical weather prediction service and underperformed current SATS.
机译:在这项研究中,我们对整个欧洲的潜在辐射增加进行了分析,这是由于在阴天和阴天期间将光伏(PV)组件移动到水平位置而产生的。研究的动机是,光伏技术已经扩展到拥有高太阳辐射的国家之外,并且如今已出现在高纬度地区和云量频繁的地区。与集中式太阳能技术不同,光伏面板可以同时利用束辐照和漫射辐照。在多云或阴天情况下,大部分太阳辐射来自散射分量,在这种情况下,该散射分量接近各向同性。然后,面向天顶的PV板比遵循太阳路径的PV板将受到更多的辐射。在我们的方法中,我们使用了来自多个基准面辐射网络站的数据。结果显示,相对于最北端的参考单轴跟踪系统(SATS),年潜在辐照量增加了3.01%。其他站点的值与气候相关。因此,与参考SATS相比,最阳光站的年辐射量将增加0.16%。记录每天的辐射增加高达19.91%。创建了两个预测模型来开发SATS,该模型可以提前确定光伏面板的最佳位置。基于辐照度持久性的模型1设计为实时工作以提高产量。记录了每年高达辐射的2.51%的增益。但是,开发模型2是为了更新当日电力市场中的产量预测,以便光伏电站所有者可以最大程度地提高收入。它基于来自数值天气预报服务的辐照度预测和目前运行不佳的SATS。

著录项

  • 来源
    《Solar Energy》 |2018年第3期|122-130|共9页
  • 作者单位

    Univ La Rioja, EDMANS Grp, Dept Mech Engn, Logrono, Spain;

    Univ La Rioja, EDMANS Grp, Dept Mech Engn, Logrono, Spain;

    Univ La Rioja, EDMANS Grp, Dept Mech Engn, Logrono, Spain;

    Pontificia Univ Catolica Chile, Escuela Ingn, Ctr Energia, Vicuna Mackenna 4860, Santiago, Chile;

  • 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

    Solar energy; Backtracking; Solar tracking systems;

    机译:太阳能;回溯;太阳能跟踪系统;
  • 入库时间 2022-08-18 00:22:52

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