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Highly efficient Multi-Junction Solar Cells Performance Improvement for AC Induction Motor Control Using the dsPIC30F Microcontroller

机译:使用dsPIC30F单片机的交流感应电动机控制中的高效多结太阳能电池性能改进

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Solar energy is an abundant renewable source which is expected to play an increasing role in terrestrial and space systems future infrastructure for distributed power generation. Improving of solar performance and efficiency is a key goal of research and the prominent factor in photovoltaic systems which make PV technologies cost-competitive with conventional sources of energy. Multi-junction solar cells are the most efficient technology for generation of electricity from solar irradiation. It's estimated that these cells have an incredible efficiency for more than 40%. They have the advantage of improved performance. Highly efficient multi-junction solar cells find their use in many applications. In regard to terrestrial industrial applications, AC electrics motors are being fed from the multi-junction photovoltaic systems when exposed to high light concentrations using a boost converter and three phase inverter for variable speed AC induction motor drives based on full digital control. Another application for multi-junction solar cells is the use in space vehicles and satellites under low light concentrations. The aim of this research work was modeled and simulated the multi-junction solar cells to improve their performance in terms of efficiency for further exploration in future photovoltaic power generation systems and implemented a variable speed control of an AC Induction Motor using the dsPIC30F Microcontroller for high performance industrial applications.
机译:太阳能是一种丰富的可再生资源,预计它将在地面和太空系统未来的分布式发电基础设施中发挥越来越大的作用。提高太阳能性能和效率是研究的关键目标,也是光伏系统中的重要因素,这使得光伏技术在成本上与常规能源竞争。多结太阳能电池是通过太阳辐照发电的最有效技术。据估计,这些电池的效率高达40%以上。它们具有提高性能的优势。高效的多结太阳能电池可在许多应用中使用。对于地面工业应用,当使用高电压转换器和三相逆变器基于全数字控制的变速AC感应电动机驱动器暴露于高光浓度时,AC电动机由多结光伏系统供电。多结太阳能电池的另一种应用是在低光密度的航天器和卫星中使用。这项研究工作的目的是对多结太阳能电池进行建模和仿真,以提高效率,从而在未来的光伏发电系统中进一步探索,并使用dsPIC30F单片机实现了交流感应电动机的变速控制,以实现更高的效率。性能工业应用。

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