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Review of inverter control algorithms in Grid-integrated Solar Photovoltaic system

机译:网格集成太阳能光伏系统逆变器控制算法回顾

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The shift to green energy has proved to be a feasible alternative to satisfy the increasing energy needs of the developing world, as dependence on conventional energy supplies has been significantly reduced. In particular, solar energy remains one of the best green energy options available because it's plentiful, clean and efficient. Owing to its DC nature, an inverter is an indispensable component of solar photovoltaic (PV) systems. The function of the inverter conversion of generated DC into AC power along with synchronization to the grid for hassle-free connection with the assurance of high power quality. So, being an inevitable part have driven the development towards low cost, high efficiency, high reliability and high tolerance topologies. However, the control algorithm places a significant role in enhancing system power quality and efficiency along with the topology. This paper presents a detailed review of the various control structures employed in a grid-integrated solar PV system.
机译:由于对发展世界的越来越大,因此已被证明是一种可行的替代方案,因为对传统能源供应的依赖性显着降低了发展中国家的越来越多的能源需求。特别是,太阳能仍然是最好的绿色能源选择之一,因为它充足,清洁和高效。由于其直流性质,逆变器是太阳能光伏(PV)系统的不可缺少的成分。变频器转换为AC电源的函数以及与GASSLE的连接与高功率质量的无忧连接的同步。因此,作为一个不可避免的部分已经推动了低成本,高效率,高可靠性和高耐受性拓扑的发展。然而,控制算法在提高系统电力质量和效率以及拓扑方面的效率方面具有重要作用。本文提出了对网格集成太阳能光伏系统中采用的各种控制结构的详细审查。

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