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An investigation of the maximum penetration level of a photovoltaic (PV) system into a traditional distribution grid.

机译:研究光伏(PV)系统对传统配电网的最大渗透水平。

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摘要

Although solar photovoltaic (PV) systems have remained the fastest growing renewable power generating technology, variability as well as uncertainty in the output of PV plants is a significant issue. This rapid increase in PV grid-connected generation presents not only progress in clean energy but also challenges in integration with traditional electric power grids which were designed for transmission and distribution of power from central stations.;Unlike conventional electric generators, PV panels do not have rotating parts and thus have no inertia. This potentially causes a problem when the solar irradiance incident upon a PV plant changes suddenly, for example, when scattered clouds pass quickly overhead. The output power of the PV plant may fluctuate nearly as rapidly as the incident irradiance. These rapid power output fluctuations may then cause voltage fluctuations, frequency fluctuations, and power quality issues. These power quality issues are more severe with increasing PV plant power output. This limits the maximum power output allowed from interconnected PV plants.;Voltage regulation of a distribution system, a focus of this research, is a prime limiting factor in PV penetration levels. The IEEE 13-node test feeder, modeled and tested in the MATLAB/Simulink environment, was used as an example distribution feeder to analyze the maximum acceptable penetration of a PV plant. The effect of the PV plant's location was investigated, along with the addition of a VAR compensating device (a D-STATCOM in this case).;The results were used to develop simple guidelines for determining an initial estimate of the maximum PV penetration level on a distribution feeder. For example, when no compensating devices are added to the system, a higher level of PV penetration is generally achieved by installing the PV plant close to the substation. The opposite is true when a VAR compensator is installed with the PV plant. In these cases, PV penetration levels over 50% may be safely achieved.
机译:尽管太阳能光伏(PV)系统仍然是增长最快的可再生发电技术,但是光伏电站的可变性和不确定性仍然是一个重要问题。光伏并网发电的快速增长不仅在清洁能源方面取得了进步,而且在与旨在用于中央站输电和配电的传统电网整合中也提出了挑战;与常规发电机不同,光伏面板没有旋转部件,因此没有惯性。当入射到光伏电站的太阳辐照度突然改变时,例如,当零散的云层迅速越过头顶时,这可能会引起问题。光伏电站的输出功率波动可能几乎与入射辐照度一样快。这些快速的功率输出波动可能会导致电压波动,频率波动和功率质量问题。随着光伏电站发电量的增加,这些电能质量问题更加严重。这限制了互连的光伏电站所允许的最大功率输出。配电系统的电压调节(这项研究的重点)是光伏渗透水平的主要限制因素。在MATLAB / Simulink环境中建模和测试的IEEE 13节点测试馈送器用作示例分配馈送器,以分析光伏电站的最大可接受的穿透力。研究了光伏电站位置的影响,并添加了VAR补偿装置(在这种情况下为D-STATCOM)。该结果用于制定简单的准则,用于确定最大光伏渗透水平的初步估计值。分配馈线。例如,当没有补偿设备添加到系统中时,通常通过将光伏电站安装在变电站附近来实现更高水平的PV渗透。当在光伏电站中安装无功补偿器时,情况正好相反。在这些情况下,可以安全地达到50%以上的PV渗透水平。

著录项

  • 作者

    Chalise, Santosh.;

  • 作者单位

    Northern Arizona University.;

  • 授予单位 Northern Arizona University.;
  • 学科 Alternative Energy.;Engineering Electronics and Electrical.;Energy.
  • 学位 M.S.
  • 年度 2012
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 新闻学、新闻事业;
  • 关键词

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