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Extensively used conventional and selected advanced maximum power point tracking techniques for solar photovoltaic applications: An overview

机译:广泛使用的传统和选择的太阳能光伏应用的高级最大功率点跟踪技术:概述

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The lower output efficiency of the solar PV panel is due to the deviation of its operating point from the maximum power operation. And the change in the maximum power point (MPP) with the change in uncontrolled environmental conditions such as temperature and isolation make it difficult to withstand the MPP operation of the system. Different techniques and maximum power point tracking algorithms have been developed to address the issue. This paper presents a critical overview of widely used maximum power tracking techniques for photovoltaic system applications. Conventional, as well as advanced developed methods, which are less complex, robust and reliable, are discussed. However, some complexity occurs while selecting the appropriate MPPT method for a particular application. One of the contributions of this review article is to provide an outline for the selection of appropriate technique suitable for a particular application. Comparative analysis and classification of the selected MPPT methods based on various features such as type of control strategies, control variables, a converter circuit, and practical/commercial applications are presented. This review article is envisioned to serve as a useful reference for future MPPT users and PV system design engineers.
机译:太阳能光伏面板的较低输出效率是由于其操作点与最大功率操作的偏差。并且,最大功率点(MPP)的变化随着温度和隔离等不受控制的环境条件的变化,使得难以承受该系统的MPP操作。已经开发出不同的技术和最大功率点跟踪算法来解决问题。本文介绍了广泛使用的光伏系统应用的最大功率跟踪技术的关键概述。讨论常规,以及常规的先进开发方法,这些方法不太复杂,坚固可靠。然而,在为特定应用选择适当的MPPT方法时发生一些复杂性。本综述文章的贡献之一是为选择适合特定应用的适当技术提供概要。提出了基于各种特征的所选MPPT方法的比较分析和分类,例如控制策略类型,控制变量,转换器电路和实用/商业应用。本综述文章被设想为未来MPPT用户和PV系统设计工程师的有用参考。

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