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A Renewable Solution Approach for Center Pivot Irrigation System

机译:中心枢轴灌溉系统的可更新解决方案方法

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In this present study a hybrid renewable energy system is proposed to optimize the load demand for Center Pivot Irrigation System for remote cultivation areas in Lubbock, Texas. The energy resources included in the study are solar photovoltaic and wind energy. For the ease of study, a 120-acre cultivable land area is considered as model. Simulation and analysis of the load is developed using HOMER (Hybrid Optimization Model for Electric Renewable) software and the optimum use of renewable resources is determined. A RT-LAB based model is also developed to determine real time analysis of center Pivot load. As the impact of wind is remarkable and solar irradiance is significant in Lubbock area, the wind turbine and solar photovoltaic system is given priority for effective optimization. Using HOMER software and RTLAB based analysis of different combinations and multiple components are considered for simulation study. An optimal solution is proposed in the work by considering the renewable energy resources as prime sources in Lubbock area for this optimization method.
机译:在本研究中,提出了一种混合可再生能源系统,以优化德克萨斯州拉伯克市偏远种植区的中心枢轴灌溉系统的负荷需求。研究中包括的能源是太阳能光伏和风能。为了便于研究,将120英亩的耕地面积作为模型。使用HOMER(电力可再生能源的混合优化模型)软件开发了负荷的仿真和分析,并确定了可再生资源的最佳利用方式。还开发了基于RT-LAB的模型来确定中心枢轴载荷的实时分析。在拉伯克地区,由于风的影响显着且太阳辐照度显着,因此,对风力涡轮机和太阳能光伏系统进行优先考虑以进行有效的优化。考虑使用HOMER软件和基于RTLAB的不同组合和多个组件的分析进行仿真研究。通过将可再生能源作为拉伯克地区的主要能源,针对该优化方法提出了一种最佳解决方案。

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