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The Survey of MPPT under non-uniform atmospheric conditions for the Photovoltaic Generation Systems
International Journal of Information Technology Pub Date : 2021-01-05 , DOI: 10.1007/s41870-020-00591-w
Manisha , Prerna Gaur

Among the undeletable sources, the PV Generation System is the most suitable resource. The main challenge for the PV generation system is changing climatic conditions and grid integration. The ongoing research is focusing on the tracking point of peak power, increasing the efficiency with reduced operating costs, and explores the challenges associated with the solar PV array under non-uniform atmospheric conditions. The weather conditions and intensity of the sunlight vary all over the day. One critical aspect of the PV cells is its non-linear P–V characteristic and possess multiple peaks under non- uniform irradiances. There is a requisite to figure out the point of maximum power, which governs the converter to extort the maximal power from the PV system. The work in this ground reiterated that the fluctuating weather situations such as temperature variation, sectional shading, etc. and grid integration demands an undisputable need of MPPT. To lessen such difficulty the paper suggests a comprehensive and relative analysis of different MPPT. The evaluation will help in selecting the PV generation system for a particular location. The review of MPPT techniques has been grouped into two groups. The first group includes all the benchmark facilities. The second group includes the intelligent techniques that explain the fuzzy-based MPPT, ANN-based MPPT evolutionary techniques, hybrid method, and MPPT techniques used in energy harvesting”.



中文翻译:

光伏发电系统在非均匀大气条件下的MPPT测量

在不可删除的资源中,光伏发电系统是最合适的资源。光伏发电系统的主要挑战是气候条件的变化和电网的整合。正在进行的研究集中在峰值功率的跟踪点上,以降低的运营成本提高效率,并探索在非均匀大气条件下与太阳能光伏阵列相关的挑战。天气条件和日照强度全天变化。PV电池的一个关键方面是其非线性P–V特性,并且在非均匀辐照度下具有多个峰。有必要找出最大功率点,该点控制转换器从光伏系统中提取最大功率。在此进行的工作重申,不断变化的天气情况(例如温度变化,断面阴影等)以及电网整合要求对MPPT的无可争议的需求。为了减轻这种困难,本文提出了对不同MPPT的全面和相对分析。评估将有助于选择特定位置的光伏发电系统。MPPT技术的回顾已分为两类。第一组包括所有基准测试设施。第二组包括用于解释基于模糊的MPPT,基于ANN的MPPT进化技术,混合方法以及用于能量收集的MPPT技术的智能技术。为了减轻这种困难,本文提出了对不同MPPT的全面和相对分析。评估将有助于选择特定位置的光伏发电系统。MPPT技术的回顾已分为两类。第一组包括所有基准测试设施。第二组包括用于解释基于模糊的MPPT,基于ANN的MPPT进化技术,混合方法以及用于能量收集的MPPT技术的智能技术。为了减轻这种困难,本文提出了对不同MPPT的全面和相对分析。评估将有助于选择特定位置的光伏发电系统。MPPT技术的回顾已分为两类。第一组包括所有基准测试设施。第二组包括用于解释基于模糊的MPPT,基于ANN的MPPT进化技术,混合方法以及用于能量收集的MPPT技术的智能技术。

更新日期:2021-01-06
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