基于pso的最大功率点跟踪改善光伏太阳能泵的性能

Mohamad Zaid Nordin, Siti Sarah Mat Isa, A. Samat, Nornaim Kamarudin, Muhammad Eillieyin Mohd Ghazali, A. I. Tajudin
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引用次数: 0

摘要

本研究项目旨在通过实施基于粒子群优化(PSO)的最大功率点跟踪(MPPT)技术来提高光伏(PV)太阳能泵的效率和性能。本研究的主要目标是设计和建模用于光伏水泵系统的Cuk转换器,整合基于pso的MPPT技术,以实现光伏阵列的最佳功率提取。基于粒子群算法开发了MPPT算法,并在MATLAB/Simulink中进行了全面的仿真验证。该项目的主要亮点包括太阳能组件与无刷直流(BLDC)水泵相结合,实现了超过80%的精度,同时有效地将抽水速度提高了50%以上。通过结合基于pso的MPPT策略,该系统展示了卓越的电力提取和传输能力,确保最大限度地利用光伏能源进行抽水作业。本研究通过提高光伏水泵的运行效率,促进了可持续能源解决方案的发展。所提出的基于pso的MPPT技术,与Cuk转换器集成,为利用太阳能抽水应用提供了一种创新和有效的方法。本研究的发现为致力于可再生能源系统在各种应用中的集成的研究人员和实践者提供了有价值的见解
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving Performance of Photovoltaic Solar Pumps Using PSO-Based Maximum Power Point Tracking
This research project aims to enhance the efficiency and performance of photovoltaic (PV) solar pumps through the implementation of a Particle Swarm optimization (PSO)-based Maximum Power Point Tracking (MPPT) technique. The primary objective of this study is to design and model the Cuk converter for application in a PV water pump system, integrating the PSO-based MPPT technique to achieve optimal power extraction from the PV array. The MPPT algorithm, based on the PSO method, was developed and thoroughly validated through comprehensive simulations conducted in MATLAB/Simulink. Key highlights of the project include the achievement of over 80% accuracy for the solar module combined with a Brushless DC (BLDC) water pump, while effectively increasing the pumping speed by more than 50%. Through the incorporation of the PSO-based MPPT strategy, the system demonstrates superior power extraction and transfer capabilities, ensuring the maximum utilization of PV energy for water pumping operations. This research contributes to the advancement of sustainable energy solutions by enhancing the operational efficiency of PV water pumps. The proposed PSO-based MPPT technique, integrated with the Cuk converter, offers an innovative and effective approach to harnessing solar energy for water-pumping applications. The findings of this study provide valuable insights for researchers and practitioners working towards the integration of renewable energy systems in various applications
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