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Solar farm hourly dispatching using a supercapacitor and battery energy storage system.

机译:使用超级电容器和电池储能系统的太阳能发电场每小时调度。

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摘要

While most research on solar energy has been concentrated on smoothing intermittent power being pushed into the power grid, this research is focused on improving the complete integration of solar energy into the power grid by dispatching, or supplying a constant level of power, for 1-hour time periods. A hybrid energy storage system (HESS), consisting of lead-acid batteries and supercapacitors, will absorb and supply the necessary levels of power to keep the systems output power constant. The demand on the overall HESS and the two components in HESS, lead-acid batteries and supercapacitors, will maintain the constant level of power to dispatch. The predicted level of output power, for a one hour dispatching period, is determined by an estimation algorithm that uses actual solar data from Oak Ridge National Laboratory collected every minute throughout the day. This research shows results from June 9th, 2015, June 10th, 2015, June 12th, 2015, and December 25th, 2015 between 5:00 AM and 7:59 PM [3]. The estimation algorithm incorporates the solar irradiance and temperature to estimate the PV arrays average output power and its efficiency. The demand on the HESS is sent through a low-pass filter with a time constant of 1-minute that is then used as the reference for the lead-acid batteries. The remaining demand on the HESS is used as the reference for the supercapacitors. This utilizes the lead-acid batteries high energy density property, or slow charge/discharge rates at high energy levels, and the supercapacitors high power density property, or rapid charge/discharge rates at low energy levels [1, 4].
机译:虽然大多数太阳能研究都集中在平滑间歇性电力被推入电网的过程中,但这项研究的重点是通过调度或提供恒定水平的电力来改善太阳能到电网的完全集成,以实现1小时时段。由铅酸电池和超级电容器组成的混合储能系统(HESS)将吸收并提供必要的功率,以保持系统的输出功率恒定。对整个HESS以及HESS中的两个组件(铅酸电池和超级电容器)的需求将保持恒定的功率分配水平。在一个小时的调度期内,输出功率的预测水平由估算算法确定,该算法使用全天每分钟收集的橡树岭国家实验室的实际太阳能数据。这项研究显示了2015年6月9日,2015年6月10日,2015年6月12日和2015年12月25日之间,从5:00 AM到7:59 PM的结果[3]。估计算法结合了太阳辐照度和温度来估计PV阵列的平均输出功率及其效率。对HESS的需求通过时间常数为1分钟的低通滤波器发送,然后用作铅酸电池的参考。 HESS上的剩余需求将用作超级电容器的参考。这利用了铅酸电池的高能量密度特性,或在高能量水平下缓慢的充电/放电速率,而超级电容器则利用了高功率密度特性,或在低能量水平下快速的充电/放电速率[1,4]。

著录项

  • 作者

    Chaires, Jordan.;

  • 作者单位

    Western Carolina University.;

  • 授予单位 Western Carolina University.;
  • 学科 Electrical engineering.;Sustainability.;Energy.
  • 学位 M.S.
  • 年度 2016
  • 页码 69 p.
  • 总页数 69
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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