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首页> 外文期刊>International Journal of Electrical and Computer Engineering >A Study of Shading Effect on Photovoltaic Modules with Proposed P&O Checking Algorithm
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A Study of Shading Effect on Photovoltaic Modules with Proposed P&O Checking Algorithm

机译:提出的P&O检查算法研究光伏组件的遮光效应

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Sun irradiation levels and associated temperature changes are the main factors that influence the conversion of solar energy into electricity. Most energy is produced during a hot sunny day as the sun irradiation is at the maximum level and uniform throughout the solar photovoltaic (PV). However, most solar PV were frequently get shadowed, completely or partially, by the neighbouring buildings, trees and passing clouds. Consequently, the solar PV has lower voltage and current output; hence, multiple maximum power points (MPP) are existed on the PV curve, which could cause confusion to the conventional Maximum Power Point Tracker (MPPT) to track the true MPP for the PV system. Thus, it is important to examine the impacts of partial shading on the solar PV in order to extract the maximum possible power. This paper presents a MATLAB-based modelling for simulation and experimental setup to study the I-V and P-V characteristics of a solar module under a non-uniform irradiation due to partial shading condition (PSC). Furthermore, this study is also proposed an effective method (a variable step size of P&O with checking algorithm) that is low cost and higher tracking efficiency. Thus, this study is essential in improving and evaluating any new MPPT algorithm under the PSC.
机译:太阳辐射水平和相关的温度变化是影响太阳能转化为电能的主要因素。由于太阳辐射达到最大水平,并且在整个太阳能光伏(PV)中均匀,所以在炎热的晴天大部分能量产生。但是,大多数太阳能光伏板经常被全部或部分地遮盖在相邻的建筑物,树木和过往的云层中。因此,太阳能光伏板的电压和电流输出较低;因此,PV曲线上存在多个最大功率点(MPP),这可能与传统的最大功率点跟踪器(MPPT)混淆,从而无法跟踪PV系统的真实MPP。因此,重要的是检查部分阴影对太阳能PV的影响,以便提取最大可能的功率。本文介绍了一个基于MATLAB的建模模型,用于仿真和实验设置,以研究由于部分遮蔽条件(PSC)导致的非均匀照射下太阳能模块的I-V和P-V特性。此外,本研究还提出了一种低成本且跟踪效率更高的有效方法(P&O的步长可变并带有检查算法)。因此,这项研究对于改进和评估PSC下的任何新MPPT算法至关重要。

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