Optimization of Photovoltaic Water Pumping System Based on BLDC Motor for Agricultural Irrigation with Different MPPT Methods

Fatima Belgacem, M. Mostefai, Miloud Yahia, Aicha Belgacem
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Abstract

This study presents a comparative analysis of different MPPT techniques for PV array fed water pumping system without batteries using brushless direct current (BLDC) Motor. The system is configured to reduce both cost and complexity with simultaneous assurance of optimum power utilization of PV array, for this we propose two intelligent maximum power point tracking MPPT techniques implemented through a boost converter; the first is based on Fuzzy Logic Controller (FLC) the second is a sliding mode control, which have been successfully applied to Photovoltaic Pumping System (PVPS) to replace tracking power point perturb and observe (P&O) under different conditions of solar radiation. As a result, the PV must be turned on at its highest power extracted. The water pumping system is designed to irrigate an area of 8 hectares, planted with onions, we have chosen a BLDC motor which is coupled with a centrifugal pump to overcome the disadvantage of brushed motors and induction motors. The object is to verify and confirm the effectiveness of the suggested system. According to simulation data, FLC improves the PVPS's performance.
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基于无刷直流电机的农业灌溉光伏水泵系统优化研究
本研究针对无刷直流(BLDC)电机的无电池光伏阵列供水泵系统的不同MPPT技术进行了比较分析。该系统的配置旨在降低成本和复杂性,同时保证光伏阵列的最佳功率利用率,为此我们提出了两种通过升压转换器实现的智能最大功率点跟踪MPPT技术;前者是基于模糊控制器(FLC),后者是一种滑模控制,并成功地应用于光伏泵系统(PVPS)在不同太阳辐射条件下取代跟踪功率点摄动和观测(P&O)。因此,PV必须在其提取的最高功率时打开。水泵系统设计用于灌溉面积8公顷,种植洋葱,我们选择了BLDC电机,它与离心泵相结合,以克服有刷电机和感应电机的缺点。目的是验证和确认建议系统的有效性。仿真数据表明,FLC提高了PVPS的性能。
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来源期刊
Periodica polytechnica Electrical engineering and computer science
Periodica polytechnica Electrical engineering and computer science Engineering-Electrical and Electronic Engineering
CiteScore
2.60
自引率
0.00%
发文量
36
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of electrical engineering and informatics fitting into one of the following five Sections of the Journal: (i) Communication systems, networks and technology, (ii) Computer science and information theory, (iii) Control, signal processing and signal analysis, medical applications, (iv) Components, Microelectronics and Material Sciences, (v) Power engineering and mechatronics, (vi) Mobile Software, Internet of Things and Wearable Devices, (vii) Solid-state lighting and (viii) Vehicular Technology (land, airborne, and maritime mobile services; automotive, radar systems; antennas and radio wave propagation).
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