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Solutions for adapting photovoltaics to large power irrigation systems for agriculture

机译:使光伏技术适应农业大功率灌溉系统的解决方案

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The adaptation of the mature PV water-pumping technology to large power irrigation applications requires the problems associated to PV power intermittencies and matching PV production with the irrigation needs to be resolved. This paper presents the innovations developed, implemented and tested in a PV irrigation prototype installed in a real well at an Irrigator Community in Alicante, Spain. The innovations eliminate the intermittences due to passing clouds, reducing the PV power by 80% in just few seconds without batteries, just using control algorithms in the frequency converter, avoiding water hammers and overvoltages. A North-South horizontal axis tracker has been used to extend the number of hours of irrigation per day and to provide daily constant profiles of PV power during the irrigation period. Moreover, the use of this tracker allows the nominal power of the PV generator to be reduced by 45% as compared to a fixed structure for the same volume of water. The analysis of the economic feasibility of the prototype compared with the cost of grid electricity shows savings of 60%. This prototype has been operating in the South of Morocco delivering more than 235 m3/day for the last three years.
机译:使成熟的光伏抽水技术适应大功率灌溉应用需要与光伏发电间歇性相关的问题,并且需要解决光伏发电与灌溉的匹配问题。本文介绍了在西班牙阿利坎特的Irrigator社区的一口井中安装的PV灌溉原型中开发,实施和测试的创新。这些创新技术消除了由于乌云而引起的间歇现象,在不使用电池的情况下,只需几秒钟即可将PV功率降低80%,只需在变频器中使用控制算法,避免水锤和过电压。南北水平轴跟踪器已被用来延长每天灌溉的小时数,并在灌溉期间提供每日恒定的光伏发电量。此外,与相同体积的水的固定结构相比,使用此跟踪器可使PV发电机的标称功率降低45%。与电网成本相比,对原型机的经济可行性进行分析表明,可节省60%的电能。该原型机已在摩洛哥南部运营,过去三年的日产量超过235µm3。

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