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Accuracy of simulated data for bifacial systems with varying tilt angles and share of diffuse radiation

机译:具有不同倾斜角和散射辐射份额的双面系统的模拟数据的准确性

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摘要

Potential investors in bifacial PV systems are still deterred by the uncertainty of energy yield predictions. Validation of the prediction methods and establishing an accuracy range is therefore a central prerequisite concerning the bankability of the bifacial technology.Because of the sensitivity on multiple additional factors compared to standard monofacial installations, the yield simulation of a bifacial PV array is far more complicated. The available simulation tools for bifacial systems still have to prove their reliability, also for predicting the effect of varying ambient and installation conditions. Moreover, bifacial devices enable new types of applications, such as vertical installations.In this work, we compare the results of simulation tools developed at ISC Konstanz and ECN.TNO, as well as the output of the commercial PVsyst simulation software, to measured data. The measured data is obtained by a test rig that carries out a continuous and automated variation of the tilt angle. The test rig is not a single stand-alone module but an array in order to include shading effects of real extended systems. In addition, the measurements focus on a central module, which represents the conditions of a typical device in an array. Days with differing light intensity and share of diffuse radiation were chosen to determine the impact of the insolation conditions on the simulation accuracy. General trends with regard to the sensitivity to tilt and insolation conditions are analyzed in order to evaluate the quality of state-of-the-art bifacial energy yield simulations.
机译:双面光伏系统的潜在投资者仍然被能源产量预测的不确定性所吓倒。因此,验证预测方法并建立准确度范围是双面技术可投资性的主要前提条件。由于与标准单面装置相比对多个其他因素的敏感性,双面PV阵列的成品率模拟要复杂得多。用于双面系统的可用仿真工具仍然必须证明其可靠性,还必须用于预测变化的环境和安装条件的影响。此外,双面设备可以实现新型应用,例如垂直安装。在这项工作中,我们将ISC Konstanz和ECN.TNO开发的仿真工具的结果以及商用PVsyst仿真软件的输出与测量数据进行比较。测量数据是通过测试设备获得的,该设备执行连续且自动的倾斜角变化。测试装备不是单个独立的模块,而是一个阵列,以便包括真实扩展系统的阴影效果。另外,测量集中在中央模块上,中央模块代表阵列中典型设备的状况。选择光强度和散射辐射份额不同的日子,以确定日晒条件对模拟精度的影响。分析了对倾斜和日晒条件的敏感性的一般趋势,以便评估最新的双面能量产量模拟的质量。

著录项

  • 来源
    《Solar Energy》 |2020年第2期|6-21|共16页
  • 作者

  • 作者单位

    Zurich Univ Appl Sci SoE Inst Energy Syst & Fluid Engn Tech Str 9 CH-8401 Winterthur Switzerland;

    ECN TNO Solar Energy Westerduinweg 3 NL-1755 LE Petten Netherlands;

    ISC Konstanz Rudolf Diesel Str 15 D-78467 Constance Germany;

    PVsyst SA Route Bois Bay 107 CH-1232 Satigny Switzerland;

  • 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

    Bifacial; Energy yield; Measurement; Simulation; Accuracy; Tilt angle;

    机译:双面能量产量测量;模拟;准确性;倾斜角度;

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