Experimental Evaluation of the Performance Degradation of a Solar PV Plant Operating in a Sahelian Climate

Abdoulaye Boubacar Maikano, Harouna Sani Dan Nomaoua, Makinta Boukar, S. Madougou
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Abstract

Niger, a Sahelian country, is known for its extreme climatic conditions and its wealth of solar deposits. In Niger, the average duration of sunshine is 8.5 hours per day and its average level is estimated at about 5 to 7 kW/m² per day. However, the rate of access to electricity in Niger remains very low. To address this problem, a 7MW solar photovoltaic power plant has been built by the authorities in the town of Malbaza (13°58.54 N and 13°58.54 E). It has a capacity of 7 MW and is composed of monocrystalline photovoltaic solar panels. In this study, we propose a method for analysing the degradation of a solar photovoltaic power plant under its operating conditions. The study will help to assess the performance and efficiency of PV systems installed in this geographical area. For this study, we use annual energy production data, recorded at the site, from 2019 to 2021. The method is based on the performance ratio values measured during these three years of operation. An hourly IR energy production index was introduced to study the degradation and reliability of the system. The performance ratio values obtained from the measurements in 2019, 2020 and 2021 are 73.22, 72.73 and 70.84 respectively; the calculated hourly energy production index values are 0.921, 0.914 and 0.891 respectively. The PVsyst software was used to estimate the value of the performance ratio. The value obtained is 79.50%. Thus, a degradation of 1% per year over the three years of operation is estimated. Finally, a comparison was made with other studies.
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萨赫勒气候下太阳能光伏电站性能退化的实验评估
尼日尔是萨赫勒地区的一个国家,以其极端的气候条件和丰富的太阳能储量而闻名。在尼日尔,平均日照时间为每天8.5小时,平均水平估计约为每天5至7千瓦/平方米。然而,尼日尔的通电率仍然很低。为了解决这个问题,当局在Malbaza镇(北纬13°58.54和东经13°58.54)建造了一座7兆瓦的太阳能光伏发电厂,容量为7兆瓦,由单晶光伏太阳能电池板组成。在本研究中,我们提出了一种分析太阳能光伏电站在其运行条件下的退化的方法。这项研究将有助于评估该地区安装的光伏系统的性能和效率。在这项研究中,我们使用了2019年至2021年在现场记录的年度能源生产数据。该方法基于这三年运行期间测量的性能比率值。引入逐时红外发电量指标来研究系统的退化和可靠性。2019年、2020年和2021年的绩效比值分别为73.22、72.73和70.84;计算得到的小时能量生产指标值分别为0.921、0.914和0.891。使用PVsyst软件估计性能比的值。结果为79.50%。因此,在运行的三年中,估计每年的退化率为1%。最后,与其他研究进行了比较。
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