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Hybrid, optimal, intelligent and classical PV MPPT techniques: A review

机译:混合,最优,智能和古典光伏MPPT技术:综述

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Renewable energy-based solar photovoltaic (PV) generation is the best alternative for conventional energy sources because of its natural abundance and environment friendly characteristics. Maximum power extraction from the PV system plays a critical role in increasing the efficiency of the solar power generation during partial shading conditions (PSCs). Therefore, a suitable maximum power point tracking (MPPT) technique to track the maximum power point (MPP) is of high need, even under PSCs. This paper presents an organized and concise review of MPPT techniques implemented for the PV systems in literature along with recent publications on various hardware design methodologies. Their classification is done into four categories, i.e. classical, intelligent, optimal, and hybrid depending on the tracking algorithm utilized to track MPP under PSCs. During uniform insolation, classical methods are highly preferred as there is only one peak in the P-V curve. However, under PSCs, the P-V curve exhibits multiple peaks, one global maximum power point (GMPP) and remaining are local maximum power points (LMPP's). Under the PSCs, classical methods fail to operate at GMPP and hence there is a need for more advanced MPPT techniques. Every MPPT technique has its advantages and limits, but a streamlined MPPT is drafted in numerous parameters like sensors required, hardware implementation, cost viability, tracking speed and tracking efficiency. This study provides the advancement in this area since some parameter comparison is made at the end of every classification, which might be a prominent base-rule for picking the most gainful sort of MPPT for further research.
机译:可再生能源的太阳能光伏(PV)代是传统能源的最佳替代品,因为其天然丰富和环保特征。来自PV系统的最大功率提取在增加部分着色条件(PSC)期间的太阳能发电效率时起着关键作用。因此,即使在PSC下,可以高效地跟踪最大功率点的合适的最大功率点跟踪(MPPT)技术具有高需求。本文介绍了在文献中实施的PV系统实施的MPPT技术以及最近关于各种硬件设计方法的出版物的有组织和简明的审查。它们的分类是分为四类,即,古典,智能,最佳和混合,具体取决于用于跟踪PSC下的MPP的跟踪算法。在均匀呈现期间,经典方法是非常优选的,因为P-V曲线只有一个峰值。然而,在PSC下,P-V曲线呈现多个峰值,一个全局最大功率点(GMPP)和剩余的局部最大功率点(LMPP)。在PSC下,经典方法无法在GMPP上运行,因此需要更先进的MPPT技术。每个MPPT技术都具有其优点和限制,但简化的MPPT在许多参数中起草,如传感器所需,硬件实现,成本存用,跟踪速度和跟踪效率。本研究提供了该领域的进步,因为在每个分类结束时进行了一些参数比较,这可能是为进一步研究采取最有损益的MPPT的突出基本规则。

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