小型直流系统中pv -燃料电池混合系统的性能分析

Snehashis Ghoshal, Sumit Banerjee, Chandan K. Mahato, C. K. Chanda
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引用次数: 2

摘要

在不妨碍经济增长的情况下减少温室气体排放已成为当前形势下人们非常关注的问题。大多数能源开采技术广泛依赖于化石燃料,因此,近几十年来,研究人员一直致力于寻找一种替代的环保经济途径。虽然可再生能源是环境友好型的,但其主要挑战是能量密度低和提取过程成本高。在几种可再生能源中,太阳能光伏和燃料电池是满足能源需求的两种有前途的方式。在可变天气条件下运行的光伏系统,如果在最大功率点运行,可以提供合理的输出。这个工作点是动态天气条件下P-V曲线的全局最大值。另一方面,燃料电池也起着至关重要的作用,特别是在小型直流应用中。燃料电池将化学能转化为电能,不像内燃机那样利用燃烧产生温室气体。本研究在MATLAB/Simulink环境下开发了一个混合动力系统,并对结果进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of PV-Fuel cell hybrid system in small scale DC system
Reduction of greenhouse gases without hampering economic growth has become a matter of great concern in present scenario. Most of the energy extraction techniques extensively depend on fossil fuels and so the researchers are engaged in finding an alternate eco-friendly economic path since last few decades. Although renewable sources are environment-friendly but major challenge with these is lower energy density and costly extraction process. Among several renewable resources, solar PV and fuel cell are two promising way for meeting up energy demand. Photovoltaic system operating under variable weather condition provide a reasonable output if operated at maximum power point. This operating point is the global maxima of the P-V curve operating under dynamic weather conditions. On the other hand, fuel cell also plays a vital role particularly for small scale DC applications. Fuel cell converts chemical energy to electricity unlike IC engine which utilizes combustion causing emission of greenhouse gases. In present study, a hybrid PV-fuel system is developed in MATLAB/Simulink environment and the results are analyzed.
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