变速风力发电机MPPT控制的对比实验研究

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Electrical and Computer Engineering Systems Pub Date : 2023-07-12 DOI:10.32985/ijeces.14.6.10
Dahbi Abdeldjalil, B. Benlahbib, M. Benmedjahed, Abderrahman Khelfaoui, A. Bouraiou, N. Aoun, Saad Mekhilefd, A. Reama
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引用次数: 0

摘要

本文对变速风力发电机的最大功率点跟踪控制方法进行了实验对比研究。为了提高风力发电系统的效率,采用最大功率点跟踪控制来提取和利用最大可用风力。此外,使用Dspace实时分析、开发和研究了两种最大功率点跟踪控制。最优转矩控制为无速度控制,最优转矩控制为带速度控制。在实时实验验证中对最大功率点跟踪控制的性能进行了比较,以说明这些控制在实际风能系统中的优势。结果已经得到并进行了讨论,其中功率效率的提高出现在传输时间和稳态。此外,最大功率点跟踪的最优转矩控制与速度控制相比,在稳态和过渡状态下分别降低了响应时间和振荡,功率增加了12.5% ~ 75%。
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A Comparative Experimental Investigation of MPPT Controls for Variable Speed Wind Turbines
This work presents an experimental comparative investigation between Maximum power point tracking control methods used in variable speed wind turbines. In order to enhance the efficiency of the wind turbine system, the maximum power point tracking control has been applied for extracting and exploiting the maximum available wind power. Furthermore, two maximum power point tracking controls have been analyzed, developed, and investigated in real-time using Dspace. The first was optimal torque control without speed control, whereas the second was with speed control. The maximum power point tracking control performance comparison has been performed in a real-time experimental validation to illustrate the advantages of these control on the real wind energy system. The results have been achieved and discussed, where the power efficiency improvements appeared in the transit time and in the steady-state as well. In addition, the proposed optimal torque control for maximum power point tracking with speed control decreased the response time and oscillations, while it increased the power to an interval of 12,5% to 75% compared to that of strategy without speed control in the steady-state and transit state, respectively.
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来源期刊
CiteScore
1.20
自引率
11.80%
发文量
69
期刊介绍: The International Journal of Electrical and Computer Engineering Systems publishes original research in the form of full papers, case studies, reviews and surveys. It covers theory and application of electrical and computer engineering, synergy of computer systems and computational methods with electrical and electronic systems, as well as interdisciplinary research. Power systems Renewable electricity production Power electronics Electrical drives Industrial electronics Communication systems Advanced modulation techniques RFID devices and systems Signal and data processing Image processing Multimedia systems Microelectronics Instrumentation and measurement Control systems Robotics Modeling and simulation Modern computer architectures Computer networks Embedded systems High-performance computing Engineering education Parallel and distributed computer systems Human-computer systems Intelligent systems Multi-agent and holonic systems Real-time systems Software engineering Internet and web applications and systems Applications of computer systems in engineering and related disciplines Mathematical models of engineering systems Engineering management.
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