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Analysis of off-grid hybrid wind turbine/solar PV water pumping systems

机译:离网混合风力发电机/太阳能光伏水泵系统分析

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While many remote water pumping systems exist (e.g. mechanical windmills, solar photovoltaic, wind-electric, diesel powered), few combine both the wind and solar energy resources to possibly improve the reliability and the performance of the system. In this paper,off-grid wind turbine (WT) and solar photovoltaic (PV) array water pumping systems were analyzed individually and combined as a hybrid system. The objectives were to determine: (1) advantages or disadvantages of using a hybrid system over using a WT or a solar PV array alone; (2) if the WT or solar PV array interfered with the output of the other; and (3) which hybrid system was the most efficient for the location. The WT used in the analysis was rated at 900 W alternating current (AC). There were three different solar PV arrays analyzed, and they were rated at 320, 480, and 640 W direct current (DC). A rectifier converted the 3-phase variable voltage AC output from the WT to DC before combining it with the solar PV array DC output. The combined renewable energies powered a single helical pump. The independent variable used in the hybrid WT/PV array analysis was in units of W/m~2. The peak pump efficiency of the hybrid systems at Bushland, TX occurred for the 900 W WT combined with the 640 W PV array. The peak pump efficiencies at a 75 m pumping depth of the hybrid systems were: 47% (WT/320 W PV array), 51% (WT/480 W PV array), and 55% (WT/640 W PV array). Interference occurred between the WT and the different PV arrays (likely due to voltage mismatch between WT and PV array), but the least interference occurred for the WT/320 W PV array. This hybrid system pumped 28% more water during the greatest water demand month than the WT and PV systems would have pumped individually. An additional controller with a buck/boost converter is discussed at end of paper for improvement of the hybrid WT/PV array water pumping system.Published by Elsevier Ltd.
机译:虽然存在许多远程水泵系统(例如机械风车,太阳能光伏,风电,柴油动力),但很少有将风能和太阳能资源结合起来以可能提高系统的可靠性和性能的系统。在本文中,离网式风力涡轮机(WT)和太阳能光伏(PV)阵列水泵系统分别进行了分析并组合为一个混合系统。目的是确定:(1)使用混合系统相对于单独使用WT或太阳能PV阵列的优缺点; (2)WT或太阳能PV阵列是否干扰了另一个的输出; (3)哪种混合动力系统最适合该位置。分析中使用的WT额定为900 W交流电(AC)。分析了三种不同的太阳能光伏阵列,它们的额定直流功率为320、480和640W。整流器将WT的三相可变电压AC输出转换为DC,然后将其与太阳能PV阵列DC输出组合。组合的可再生能源为单个螺旋泵提供动力。混合WT / PV阵列分析中使用的自变量以W / m〜2为单位。 900 W WT和640 W PV阵列相结合,在德克萨斯州Bushland的混合动力系统出现了峰值泵效率。在混合系统的75 m抽水深度处,最高抽水效率为:47%(WT / 320 W PV阵列),51%(WT / 480 W PV阵列)和55%(WT / 640 W PV阵列)。 WT与不同PV阵列之间发生干扰(可能是由于WT与PV阵列之间的电压失配),但WT / 320 W PV阵列发生的干扰最少。与WT和PV系统单独抽水相比,该混合系统在最大需水月份的抽水量高出28%。本文末尾讨论了带有降压/升压转换器的附加控制器,用于改进混合WT / PV阵列水泵系统。由Elsevier Ltd.发布。

著录项

  • 来源
    《Solar Energy 》 |2012年第5期| p.1197-1207| 共11页
  • 作者

    Brian D. Vick; Byron A. Neal;

  • 作者单位

    USDA, Agricultural Research Service, P. O. Drawer 10, Bushland, TX 79012, United States;

    USDA, Agricultural Research Service, P. O. Drawer 10, Bushland, TX 79012, United States;

  • 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

    wind; solar; hybrid; water pumping; PV; Wind turbine;

    机译:风;太阳杂种抽水;PV;风力发电机;

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