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Performance and Degradation Analyses of two Different PV Modules in Central Anatolia

机译:安纳托利亚中部两个不同光伏组件的性能和退化分析

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Ankara (latitude: around 40°N) is in Central Anatolia and the climate is dry continental. Due to the rapid transition to renewable energy policies of Turkey it is now a must to complete truthful feasibility analyses for solar power systems countrywide. Long term performance and degradation analyses have been carried out by the authors for three different arrays and many research results appearing in the literature are summarized. Present research analyzes the outdoor testing results of two PV modules monthly data. One of the modules has multi crystalline silicon (Poly-Si) cells and the other is thin film silicon (amorphous Si / microcrystalline Si tandem structure - a-Si/μ c-Si) cells. The results showed that in five years the average yearly efficiency decreases from 14% to 11% for Poly-Si (14.72% is the nameplate Standard Test Condition (STC) efficiency) and from 8% to 6% for thin film modules (9.15% is STC efficiency). Our calculations are based on measured solar global-horizontal irradiance from which we calculated plane-of-array irradiation using an anisotropic sky model. We present the details of these analyses and degradation rates for the two types of modules to be used in long term feasibility analyses.
机译:安卡拉(北纬40度左右)位于安纳托利亚中部,气候为干陆性。由于土耳其向可再生能源政策的快速过渡,现在必须完成全国太阳能发电系统的真实可行性分析。作者已经针对三种不同的阵列进行了长期性能和降解分析,并总结了文献中出现的许多研究结果。当前的研究分析了两个光伏组件每月数据的户外测试结果。其中一个模块具有多晶硅(Poly-Si)电池,另一个模块是薄膜硅(非晶硅/微晶硅串联结构-a-Si /μc-Si)电池。结果表明,在五年中,多晶硅的年平均效率从14%降至11%(铭牌标准测试条件(STC)效率为14.72%),薄膜模块的年均效率从8%降至6%(9.15%)。是STC效率)。我们的计算基于所测得的太阳总水平辐照度,我们使用各向异性的天空模型从中计算出了阵列平面辐照度。我们介绍了用于长期可行性分析的两种模块的这些分析和降解率的详细信息。

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