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Optimum Sizing and Economic Analysis of Standalone PV System with a Small Size Grinding Mill

机译:具有小型磨削磨机独立光伏系统的最佳施胶和经济分析

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This work presents the results of the characterization of a standalone photovoltaic system for the electrification of a household located in rural area in the western region of Cameroon: Nziih-Bafou in Dschang (5.35 ° N, 10.05 ° E and 1900 m). In order to cope with the maintenance charges and reduce the investment cost, a small mill was added to the appliances of the household for income generation. The assessment of the energy demand was made by taking into account the reactive energy due to the heavy consumption of energy by the mill’s motor, especially during ignition. The sizing of all the system’s components was carried out with the prospect of determining an optimum design in accordance with daily electricity demand, site irradiance profile and climatic conditions. In this context, tilt angles applicable to the PV structure and that allow to receive the maximum irradiance as a function of the periods of the year were determined using the Hay model. This approach provides the system with incident irradiance greater than or at the limit equal to that received by a horizontal surface on the same site compared to the case of a single tilt angle where the irradiance on the inclined plane is often lower than that on the horizontal. The economic analysis of the PV system showed an initial cost of $4448 and the Life Cost Cycle amounted to $24,495. This amount corresponds to a present cost per kilowatt hour of $0.44. The Net Present Value (NPV) of the project ($7793) over its lifetime (20 years) shows a payback period of less than 4 years.
机译:这项工作介绍了位于喀麦隆西部地区的农村地区的房户电气化的独立光伏系统的结果:Nziih-Bafou(Dschang)(5.35°N,10.05°E和1900米)。为了应对维护费用并降低投资成本,将小型工厂添加到家庭的家电中,用于收入生成。通过在磨机的电动机的沉重消耗,特别是在点火期间,通过考虑到活性能量来进行能量需求的评估。所有系统组件的尺寸是根据每日电力需求,现场辐照曲线和气候条件确定最佳设计的前景。在这种情况下,使用Hay模型确定适用于PV结构的倾斜角度并且允许作为年度周期的函数接收最大辐照度。该方法提供了与在倾斜平面上的辐照上的辐照的情况相比,相对于由倾斜平面上的辐照的情况相比,该系统提供大于或者在相同的水平表面接收到的限制。倾斜平面上的辐照比在水平上的辐照上的情况相比通常低于其水平的情况。 PV系统的经济分析表明,初始成本为4448美元,生命成本周期达到24,495美元。此金额对应于每千瓦时每小时0.44美元的现货。项目的净目前(NPV)(7793美元)在其寿命(20年)上(20年)显示了不到4年的投资回收期。

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