Comparison of two maximum power point trackers for photovoltaic systems using robust controllers

N. O. Cherchali, A. Morsli, M. S. Boucherit, L. Barazane, A. Tlemçani
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引用次数: 2

Abstract

Photovoltaic power is widely used to supply isolated or unpopulated areas (lighting, pumping, etc.). Great advantage is that this source is inexhaustible, it offers great safety in use and it is clean. But the dynamic models used to describe a photovoltaic system are complicated and nonlinear and due to nonlinear I-V and P-V characteristics of photovoltaic generators, a maximum power point tracking technique (MPPT) is required to maximize the output power. In this paper, two online techniques of maximum power point tracking using robust controller for photovoltaic systems are proposed, the first technique use fuzzy logic controller (FLC) and the second use sliding mode controller (SMC) for photovoltaic systems. The two maximum power point tracking controllers receive the partial derivative of power as inputs, and the output is the duty cycle corresponding to maximum power. A Photovoltaic generator with Boost converter is developed using MATLAB / Simulink to verify the preferences of the proposed techniques. SMC technique provides a good tracking speed in fast changing irradiation and when the irradiation changes slowly or is constant the panel power of FLC technique presents a much smoother signal with less fluctuations.
两种采用鲁棒控制器的光伏系统最大功率点跟踪器的比较
光伏发电被广泛应用于偏远或无人居住的地区(照明、抽水等)。它最大的优点是取之不尽,用之不竭,安全,清洁。但是用于描述光伏系统的动态模型是复杂和非线性的,由于光伏发电机组的非线性I-V和P-V特性,需要采用最大功率点跟踪技术(MPPT)来实现输出功率最大化。本文提出了两种基于鲁棒控制器的光伏系统最大功率点在线跟踪技术,第一种技术采用模糊逻辑控制器(FLC),第二种技术采用滑模控制器(SMC)。两个最大功率点跟踪控制器接收功率的偏导数作为输入,输出为最大功率对应的占空比。利用MATLAB / Simulink开发了一个带有升压变换器的光伏发电机,验证了所提技术的优越性。SMC技术在快速变化的辐照下具有良好的跟踪速度,当辐照变化缓慢或恒定时,FLC技术的面板功率信号更平滑,波动更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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