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A study on simulations of the power output and practical models for building integrated photovoltaic systems

机译:建筑集成光伏系统功率输出仿真与实用模型研究

摘要

With the rapid increase in Building Integrated Photovoltaic (BIPV) systems and the popularity of photovoltaic (PV) applications, a simple but accurate model to calculate the power output of PV modules is crucial for evaluating systems. In addition, in the analysis of energy payback, two factors, the power output (maximum power output) model of PV modules and the representative local weather data, affect calculations of the energy savings and the payback time of BIPV systems. Most studies take the efficiency of PV modules as constant when calculating the energy payback time of PV systems, and ignore the influence of solar radiation and temperature on the results of the calculation. This study tries to develop one simple, practical, yet more accurate model for describing the characteristics of the power output of PV modules. It develops a model for describing the I - V characteristics of PV modules according to the equivalent circuits of solar cells, by which an accurate but complicated model of the maximum power output (MPO) can be achieved. Taking this MPO model as a benchmark, two other application models from other studies are evaluated and examined. One simplified application model for describing the maximum power output of PV modules is then derived from the results of the simulation. Once the solar radiation on PV panels and the ambient temperature are known, the power output of BIPV systems or PV systems can be calculated accurately and easily.
机译:随着建筑物集成光伏(BIPV)系统的迅速增加以及光伏(PV)应用的普及,用于计算PV模块功率输出的简单而准确的模型对于评估系统至关重要。此外,在能源回收期分析中,光伏组件的功率输出(最大功率输出)模型和代表性的当地天气数据这两个因素会影响BIPV系统的节能量和投资回收期的计算。在计算光伏系统的能量回收时间时,大多数研究都将光伏组件的效率作为常数,而忽略了太阳辐射和温度对计算结果的影响。这项研究试图开发一种简单,实用,但更准确的模型来描述光伏组件的功率输出特性。根据太阳能电池的等效电路,开发了一个描述光伏组件I-V特性的模型,通过该模型可以实现最大功率输出(MPO)的精确而复杂的模型。以该MPO模型为基准,对来自其他研究的另外两个应用程序模型进行了评估和检查。然后,从仿真结果中得出一种用于描述PV组件最大功率输出的简化应用模型。一旦知道了光伏板上的太阳辐射和环境温度,就可以准确,轻松地计算出BIPV系统或PV系统的功率输出。

著录项

  • 作者

    Lu L; Yang HX;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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