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DC/AC conversion efficiency of grid-connected photovoltaic inverters in central Mexico

机译:墨西哥中部并网光伏逆变器的DC / AC转换效率

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摘要

The DC/AC conversion efficiency of grid-connected photovoltaic inverters depends on climatic characteristics, technical characteristics of the inverters and PV modules, array orientation, ratio of array peak power to inverter nominal power and DC input voltage fed to the inverter. The influence of the DC input voltage in DC/AC conversion efficiency was investigated by Zhu et al. (2011) for a high-latitude maritime climate. In this paper, all the aforementioned factors, including the DC input voltage, are analyzed for the case of the low-latitude semi-desert climate of Aguascalientes, central Mexico. Solar irradiance and temperature measurements of 10 years are used to generate a year of typical characteristics which is the basis of the research. Two commercial grid-connected photovoltaic inverters with different efficiency behavior with respect to DC input voltage and PV technologies based on crystalline silicon and Cadmium Telluride are characterized. The research reveals that maximum losses in annual inverter efficiency due to a sub-optimal string configuration are 1.3% for the analyzed technologies. Rules for sizing the array voltage and array power which keep high annual inverter efficiency while reducing the balance of -systems costs are recommended. For optimally oriented systems, the recommended array-to-inverter power sizing ratio is 1.05 for c-Si and 0.95 for CdTe independently of the chosen inverter at central Mexico. The methodology can be replicated to other locations, inverters and photovoltaic technologies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:并网光伏逆变器的DC / AC转换效率取决于气候特性,逆变器和PV模块的技术特性,阵列方向,阵列峰值功率与逆变器额定功率之比以及馈入逆变器的DC输入电压。 Zhu等人研究了直流输入电压对DC / AC转换效率的影响。 (2011年)的高纬度海洋气候。本文针对墨西哥中部阿瓜斯卡连特斯的低纬度半沙漠气候情况,分析了所有上述因素,包括直流输入电压。用太阳辐照度和10年的温度测量来生成具有典型特征的一年,这是研究的基础。表征了两个商用并网光伏逆变器,这些逆变器相对于直流输入电压和基于晶体硅和碲化镉的光伏技术具有不同的效率行为。研究表明,由于分析技术的次优配置,每年逆变器效率的最大损失为1.3%。建议制定用于确定阵列电压和阵列功率的规则,这些规则可保持每年高的逆变器效率,同时降低系统成本的平衡。对于最佳定向系统,与墨西哥中部选择的逆变器无关,对于c-Si,建议的阵列与逆变器功率尺寸比为1.05,对于CdTe为0.95。该方法可以复制到其他位置,逆变器和光伏技术。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2016年第1期|650-665|共16页
  • 作者单位

    Univ Panamer, Fac Ingn, Campus Aguascalientes, Aguascalientes 20290, Aguascalientes, Mexico;

    Univ Panamer, Fac Ingn, Campus Aguascalientes, Aguascalientes 20290, Aguascalientes, Mexico;

    Univ Jaen, Ctr Adv Studies Energy & Environm, Las Lagunillas Campus, Jaen 23071, Spain|Univ Jaen, IDEA Solar Energy Res Grp, Las Lagunillas Campus, Jaen 23071, Spain;

  • 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

    DC/AC conversion efficiency; DC input voltage; Grid-connected photovoltaic system; Inverter;

    机译:DC / AC转换效率;DC输入电压;并网光伏系统;逆变器;

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