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On the Optimal Tilt Angle and Orientation of an On-Site Solar Photovoltaic Energy Generation System for Sabah’s Rural Electrification

机译:关于沙巴农村电气化现场太阳能光伏能量发电系统的最佳倾斜角度和取向

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摘要

An ongoing project to implement a mini standalone solar photovoltaic (PV) generation system of 2.5 kWp capacity at the eco-tourism centre of Liogu Ku Silou-Silou (EPLISSI), Sabah, was initiated in 2019. Since the solar panel support (ground mounting) used in this project will be erected separately, the main goals of this study are to estimate the optimum tilt angle, βopt, and orientation for the solar PV modules. To achieve these goals, the Liu and Jordan isotropic diffuse radiation model was used (1960). Another three isotropic diffuse sky radiation models (Koronakis model, Badescu model, and Tian model) were applied to estimate the optimum tilt angle with the orientation kept facing due south. For verification purposes, the PV power output data obtained from an online PV simulator known as Global Solar Atlas or GSA 2.3 was used and compared to the results of the four isotropic models. The results suggest that the Tian model is more suitable for approximating insolation, as it was proven to have the lowest difference among all models and is in close agreement with the result of the optimum tilt angle provided by GSA 2.3. However, the outcomes demonstrated from the isotropic models propose an error up to 30% (in the range of 31% to 32%) as compared to GSA 2.3.
机译:一个正在进行的项目来实现小型独立的太阳能光伏(PV)中的Liogu喾Silou-Silou(EPLISSI),沙巴的生态旅游中心2.5 kWp的容量发生系统,在2019年启动了由于太阳能面板支承(接地安装在这个项目中使用)将被分别竖立,本研究的主要目标是估计的最佳倾斜角,βopt,和取向的太阳能PV模块。为了实现这些目标,使用了刘和约旦各向同性散射辐射模型(1960年)。另外三个各向同性天空漫射模型(模型Koronakis,Badescu模型,田模型)应用于估计与方向的最佳倾斜角保持面对南方。为了验证的目的,使用并与四个各向同性模型的结果从被称为全球太阳能阿特拉斯或GSA 2.3在线PV模拟器获得的PV功率输出的数据。结果表明,田模型更适合逼近曝晒,因为它被证明有所有车型中最低的差异,并与由GSA 2.3提供的最佳倾斜角的结果非常一致。然而,相比于GSA 2.3从各向同性模型中证明的结果提出了一个错误高达30%(在31%至32%的范围内)。

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