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Data sets for energy rating of photovoltaic modules

机译:光伏模块能效等级数据集

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摘要

A proposal for generating standard climatic data sets for use in energy rating of photovoltaic (PV) modules is presented which will give a good comparability between different technologies. The current proposal of standard data sets consisting of "typical days" do not give realistic estimates of PV performance and thus is not sufficient as a rating standard. A dataset striking the balance between being significant for any location but does not consisting of too much data is required. A method to generate such a dataset is presented, meeting all the requirements of an international standard while being sufficiently accurate to differentiate between different devices of different manufacturers. It is suggested to work with annual data-sets for specific climatic zones, and compare devices based on their module performance ratio. Using geographical information systems and proven modeling approaches, it is demonstrated that seven such annual data sets give sufficient detail and relevance to allow a comparison of different PV device technologies in all European operating environments. The method to use GIS datasets to identify suitable sites and then use more accurate, specific measurement data based on long-term averages for chosen sites. It is shown that the year-to-year variation is minimal, thus making these datasets suitable for comparing typical energy yields of different devices, i.e. carry out an energy rating. The study is currently limited to European data and climatic zones, which is sufficient to derive the methodology for generating and classifying the data. An international standard will, however, need a wider coverage. The extension to other data-sets and climatic zones is proposed and will have to be carried out by the appropriate standards bodies if this is to become an internationally accepted standard.
机译:提出了生成标准气候数据集以用于光伏(PV)组件的额定能量的提案,该提案将在不同技术之间提供良好的可比性。当前由“典型日”组成的标准数据集的建议并未给出光伏性能的实际估计,因此不足以作为评级标准。需要一个在任何位置都有意义但又不能包含太多数据之间取得平衡的数据集。提出了一种生成这种数据集的方法,该方法可以满足国际标准的所有要求,同时又要足够准确以区分不同制造商的不同设备。建议使用特定气候区域的年度数据集,并根据其模块性能比率比较设备。通过使用地理信息系统和经过验证的建模方法,证明了七个此类年度数据集提供了足够的细节和实用性,可以在所有欧洲运行环境中比较不同的光伏设备技术。使用GIS数据集识别合适的站点,然后根据所选站点的长期平均值使用更准确,更具体的测量数据的方法。结果表明,逐年变化很小,因此使这些数据集适合于比较不同设备的典型能量产出,即执行能量评级。该研究目前仅限于欧洲数据和气候区,这足以得出生成和分类数据的方法。但是,国际标准将需要更广泛的覆盖。建议扩展到其他数据集和气候区,如果要成为国际公认的标准,则必须由相应的标准机构来执行。

著录项

  • 来源
    《Solar Energy》 |2013年第7期|267-279|共13页
  • 作者单位

    European Commission, Joint Research Centre, Italy;

    European Commission, Joint Research Centre, Italy;

    University of Agder, Department of Engineering, Norway;

    Loughborough University, Centre for Renewable Energy Systems Technology, United Kingdom;

  • 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

    Photovoltaics; Energy rating; Solar radiation;

    机译:光伏;能量等级;太阳辐射;

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