三相并网液体太阳能光伏阵列逆变器控制回路设计

R. P. Vishvakarma, S. Singh, T. Shukla, S. Kushwaha, V. Devbrat
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引用次数: 5

摘要

本文在PSIM软件中对光伏三相逆变系统进行了仿真和控制。目前,传统的光伏系统成本很高,这可能会阻碍人们对全面实施太阳能光伏解决方案的广泛兴趣。为了在实时实现之前对控制算法进行测试,对系统进行了仿真。逆变器可以完全控制无功功率。在北欧国家,光伏系统的利用率相当低,可以通过实施诸如不间断电力供应、改善当地电力质量或辅助服务等附加功能来增加。这种漂浮的太阳能发电装置被称为液体太阳能阵列(LSA),它使用集中的光伏技术,其中一个透镜将光线引导到太阳能电池上,并全天跟随太阳移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3-Phase grid-connected Liquid Solar Arrays photovoltaic inverter control loop design
In this paper a photovoltaic (PV) 3-phase inverter system is simulated jointly with its control in PSIM software. The conventional PV systems of today can be costly and this likely prevents wide-scale interest in fully implementing solar PV solutions. The simulation of the system is developed for testing control algorithm before a real-time implementation. The inverter allows full control of reactive power. The utilization of PV systems is rather low in northern European countries and could be increased by implementation of additional functionality such as uninterruptible power supply, local power quality improvement or ancillary services. The floating solar power units, called Liquid Solar Arrays (LSA), use concentrated photovoltaic technology where a lenses direct the light onto solar cells and move throughout the day to follow the sun.
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