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Modelling of a residential solar stand-alone power system

机译:住宅太阳能独立电源系统的建模

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Modelling of residential solar powered stand-alone power system comprising photovoltaic (PV) arrays, and a secondary battery is presented. Besides, an economic study is performed to determine the cost of electricity (COE) produced from this system so as to determine its competitiveness with the conventional sources of electricity. All of the calculations are performed using a computer code developed by using MATLAB®. The code is designed so that any user can easily change the data concerning the location of the system or the working parameters of any of the system''s components to estimate the performance of a modified system. The system output was calculated for Cairo city (30°01''N, 31°14''E) in Egypt. It was found that maximum amount of hourly radiation on the photovoltaic arrays tilted by an angle of 30° facing south is 945.8 W/m2 and is obtained in April. Also, the average maximum efficiency of the modelled 200 W solar cells was 12.098% with a maximum power of 162.172 W. The system which has an efficiency of 10.283% showed a great ability to satisfy the estimated demand load. The COE obtained from the system was found to be 44 cents/kWh over 20 years of its operation. This cost is high when compared with 30 cents/kWh for electricity produced using an off grid diesel generator and 6 cents/kWh for a similar grid connected house. However, an extra cost of 1.6 cents/kWh exists in case of considering removing CO2 produced by the two conventional sources.
机译:提出了由光伏(PV)阵列和二次电池组成的住宅太阳能独立电源系统的建模。此外,还进行了一项经济研究,以确定此系统产生的电费(COE),以便确定其与常规电源的竞争力。所有计算都是使用通过MATLAB ®开发的计算机代码执行的。设计该代码是为了使任何用户都可以轻松地更改有关系统位置或任何系统组件工作参数的数据,以评估修改后的系统的性能。系统输出是针对埃及开罗市(北纬30°01'',东经31°14'')计算的。发现在向南倾斜30°角的光伏阵列上,每小时最大辐射量为945.8 W / m 2 ,并于4月获得。同样,模型化的200 W太阳能电池的平均最大效率为12.098%,最大功率为162.172W。效率为10.283%的系统显示出满足估计需求负载的强大能力。在系统运行20年后,从该系统获得的COE为44美分/千瓦时。与使用离网柴油发电机产生的电力为30美分/千瓦时相比,对于类似的并网房屋所产生的电力为6美分/千瓦时相比,此成本较高。但是,如果考虑去除由两种传统来源产生的CO 2 ,则存在1.6美分/千瓦时的额外成本。

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