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Using MATLAB to model and simulate a photovoltaic system to produce hydrogen

机译:使用MATLAB建模和仿真光伏系统以产生氢气

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Energy is currently the basis for development in different areas worldwide. Traditional sources of energy such as coal, oil, and nuclear energy have serious repercussions on the environment and are non-renewable energies. Therefore, renewable energy, like solar, wind, and marine energy, are alternatives. Egypt is considered an important country that has climatic averages allowing the exploitation of renewable energy. Solar energy is available in Egypt, especially in Upper Egypt, throughout the year. Different models have been created to estimate and predict the global solar radiation intensity due to the shortage of measuring stations. This study presents a mathematical model to estimate and predict the global solar radiation intensity in Egypt. This model is compared and validated against published measurements of global solar radiation intensity. Furthermore, this study introduces a hybrid system used to produce hydrogen (photovoltaic generator-PEM electrolyzer). Modelling and simulating methods is done by running a flowchart in MATLAB to minimize the losses in the system and increase the quantity of hydrogen produced. The simulation includes the global solar radiation estimation and the photovoltaic generator-PEM electrolyzer. The experiment was conducted in March in Suez city, Egypt. The results obtained showed that the model of global solar radiation gives a good prediction for estimating the intensity of global solar radiation in Egypt. Furthermore, they concluded that there is a significant improvement in system performance that signifies an increase in the volume of hydrogen produced by the system. The whole model is simulated, and the simulation results fit the experimental data very well. The electrolyzer is powered by a PV panel and is modelled, sized, and experimentally validated.
机译:当前,能源是全球不同领域发展的基础。煤炭,石油和核能等传统能源对环境具有严重影响,并且是不可再生的能源。因此,可再生能源(例如太阳能,风能和海洋能)是替代能源。埃及被认为是重要的国家,其平均气候条件允许开发可再生能源。埃及全年都有太阳能,特别是上埃及。由于缺乏测量站,已经建立了不同的模型来估计和预测全球太阳辐射强度。这项研究提出了一个数学模型来估计和预测埃及的全球太阳辐射强度。将该模型与已发布的全球太阳辐射强度测量结果进行了比较和验证。此外,本研究介绍了一种用于生产氢气的混合系统(光伏发电机-PEM电解槽)。建模和仿真方法是通过在MATLAB中运行流程图来完成的,以最大程度地减少系统中的损失并增加产生的氢气量。模拟包括全球太阳辐射估计和光伏发电机-PEM电解槽。该实验于3月在埃及苏伊士市进行。获得的结果表明,全球太阳辐射模型为估算埃及全球太阳辐射强度提供了良好的预测。此外,他们得出结论,系统性能有了显着改善,这表明系统产生的氢气量增加了。对整个模型进行了仿真,仿真结果很好地拟合了实验数据。电解槽由PV板供电,并经过建模,尺寸确定和实验验证。

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