为基于 MPPT 方法的风能系统设计新型智能合作式 2 型模糊逻辑控制器和分数阶协同方法

IF 1.8 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Mohamed El Moustapha Annane, Amor Ounissi, Rachid Abdessemed, Badreddine Babes
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引用次数: 0

摘要

要提高风力发电机的性能,就必须采用先进高效的控制策略,最大限度地实现空气动力能量转换。由于风总是不断变化的,因此可以通过在给定风速下以最佳转速驱动风力转子来最大化风力发电机的输出功率。这可以通过最大功率点跟踪(MPPT)系统来实现。多年来,已开发出许多先进的 MPPT 控制装置,每种装置都具有以最高效、最有效的方式产生最大功率的巨大潜力。关于目前的 MPPT 控制研究,本文讨论了一种新的智能协同控制技术的分析、设计和实时实施,以增强带隔离负载的风力发电机的 MPPT。研究的主要目标是开发一种区间 2 型模糊逻辑系统(IT2-FLS)MPP 估算器,该估算器可确保风力发电机以最大功率运行,且效率更高、稳态误差更小、功率波动更小。此外,还设计了一个分数非线性协同控制器来提高速度响应,该控制器可通过直流-直流升压转换器实现。建议的智能协同 MPPT 控制器通过基于永磁同步发电机的风力涡轮机结构进行了实验测试。为了评估所考虑的策略的性能,对两种不同的风速测试场景进行了测试,在速度波动比、稳态速度误差和跟踪参考方面,将所建议的智能协同 MPPT 控制器的性能与基于 IT1-FLS 的 MPPT 技术的性能进行了比较。结果表明,建议的智能协同 MPPT 控制器性能更优。所考虑的策略非常有效,因此适合用于调节各种风力发电机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design of a novel intelligent cooperative type-2 fuzzy logic controller and fractional-order synergetic approach for wind energy systems based MPPT methodology

Design of a novel intelligent cooperative type-2 fuzzy logic controller and fractional-order synergetic approach for wind energy systems based MPPT methodology

Improving wind generator performance demands advanced and efficient control strategies to maximize aerodynamic energy conversion. Since the wind is always changing, the output power of a wind generator may be maximized by driving the wind rotor at the best rotational velocity for a given wind velocity. This is accomplished using a maximum power point tracking (MPPT) system. Over the years, many advanced MPPT controls have been developed, each with huge potential to generate the maximum power in the most efficient and effective way. Concerning the present study on the MPPT control, this paper discusses the analysis, design and real-time implementation of a new intelligent cooperative control technique to enhance the MPPT of wind power generators with isolated loads. The primary goal of the research is to develop of an interval type-2 fuzzy logic system (IT2-FLS) MPP estimator that can ensure the operation of the wind generator in maximum power with higher efficiency, less steady-state error, and power fluctuation. Furthermore, a fractional nonlinear synergetic controller has also been designed to enhance the speed response, which can be implemented with a DC–DC boost converter. The suggested intelligent cooperative MPPT controller is tested in an experiment using a permanent magnet synchronous generator-based wind turbine structure. Two different wind speed test scenarios were performed to evaluate the performance of the considered strategy, where the performance of the suggested intelligent cooperative MPPT controller was compared to the performance of the IT1-FLS-based MPPT technique in terms of speed fluctuation ratio, speed error in steady state, and tracking reference. The obtained results indicate that the suggested intelligent cooperative MPPT controller achieves superior performance. The effectiveness of the considered strategy is very good, which makes it a suitable option for regulating various wind generators.

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来源期刊
CiteScore
3.60
自引率
13.60%
发文量
536
审稿时长
4.8 months
期刊介绍: The Journal of the Brazilian Society of Mechanical Sciences and Engineering publishes manuscripts on research, development and design related to science and technology in Mechanical Engineering. It is an interdisciplinary journal with interfaces to other branches of Engineering, as well as with Physics and Applied Mathematics. The Journal accepts manuscripts in four different formats: Full Length Articles, Review Articles, Book Reviews and Letters to the Editor. Interfaces with other branches of engineering, along with physics, applied mathematics and more Presents manuscripts on research, development and design related to science and technology in mechanical engineering.
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