Conformity Assessment in Senegal: Conformity Tests in Laboratories as the Basis for Quality Infrastructure

P. Tavares, H. Ndiath, N. Mbengue, A. Sarr, B. Mbow, I. Youm
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Abstract

This work focuses on quality infrastructure in the solar photovoltaic field in Senegal. On the one hand, it deals with the improvement of the quality infrastructure and on the other hand, conformity assessment accompanied by metrology and performance tests on batteries. We felt it was necessary to revisit the concepts of quality infrastructure and conformity assessment. Then in the improvement of this infrastructure metrology tests were carried out on electrical components by performing maximum error calculations to check the conformity on the voltage, the current, frequency and resistance of electrical quantities at a metrology laboratory, the African Laboratory of Metrology and Testing (LAME). We have also carried out compliance tests on batteries with the measuring equipment of the Laboratory for Quality Control of Solar photovoltaic components (LCQS), a laboratory for testing photovoltaic solar components in Senegal. The study of the batteries covers two (2) elements in one cycle with a nominal capacity of 1080Ah. The capacities calculated after the tests performed on the two (2) elements are respectively C1(t)=1223Ah and C2(t)=1318Ah.
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塞内加尔的合格评定:实验室的合格测试是质量基础设施的基础
这项工作的重点是塞内加尔太阳能光伏领域的优质基础设施。它一方面涉及质量基础设施的改进,另一方面涉及电池计量和性能测试的合格评定。我们觉得有必要重新审视质量基础设施和合格评定的概念。然后,在改进这一基础设施的过程中,在计量实验室,即非洲计量和测试实验室,通过进行最大误差计算,对电气元件进行了计量测试,以检查电压、电流、频率和电阻的一致性。我们还利用太阳能光伏组件质量控制实验室(LCQS)的测量设备对电池进行了符合性测试,该实验室是塞内加尔测试光伏太阳能组件的实验室。电池的研究涵盖两个(2)元素在一个循环中,标称容量为1080Ah。对两(2)个元件进行试验后计算出的容量分别为C1(t)=1223Ah和C2(t)=1318Ah。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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