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  Citation Number 4
 Views 18
 Downloands 3
Kalıcı Mıknatıslı Senkron Generatörlü Rüzgâr Enerjisi Dönüşüm Sistemlerinde Maksimum Güç Kontrolünün Akıllı Yapı Tabanlı Modellemesi
2021
Journal:  
Avrupa Bilim ve Teknoloji Dergisi
Author:  
Abstract:

Rüzgâr enerjisi, elektrik üretiminde kullanımı giderek artan yenilenebilir bir enerji kaynağıdır. Rüzgârdan elektrik enerjisinin üretiminde kullanılan sistemin verimliliği, uygun elemanların ve kontrol tekniğinin seçimine bağlıdır. Bu tür dönüşüm sistemlerinde, değişken hızlı rüzgâr türbinleriyle doğrudan bağlantılı olarak kullanılabilen kalıcı mıknatıslı senkron generatörler ön plana çıkmaktadır. Bu generatörler, elektriksel kayıpları ve mekanik bileşenlere bağımlılığı azaltarak genel sistem performansını yükseltme özelliğine sahiptir. Dönüşüm sistemlerinde sistemin anlık çalışma hızı ayarlanarak yapılan kontrol maksimum güç noktası izleme kontrolü olarak tanımlanmaktadır. Bu kontrol, anlık rüzgâra göre sistemin üretim verimliliği en üst düzeyde tutarak daha uzun ömürlü ve daha az maliyetli enerji üretimi sağlayabilir. Bu çalışmada, rüzgâr enerjisi dönüşüm sistemi ve maksimum güç noktası izleme kontrolünün temel prensibi açıklanmış. Akıllı kontrol yapısı olarak tanımlanan bulanık mantık kontrolü Matlab/Simulink ortamında modellenerek çeşitli sistem büyüklükleri üzerinden kontrol yapısının analizi gerçekleştirilmiştir. Bu kontrol yapısı, değişken rüzgâr profiline göre dönüşüm sisteminin daha kararlı ve daha verimli çalışmasını sağlamıştır.

Keywords:

Intelligent construction-based modeling of maximum power control in wind energy conversion systems with permanent magnetic synchronic generator
2021
Author:  
Abstract:

Wind energy is a renewable energy source that is increasingly used in electricity production. The efficiency of the system used in the production of wind electricity depends on the choice of the appropriate elements and control technique. In such conversion systems, permanent magnetic synchronous generators, which can be used directly connected to variable fast wind turbines, are on the forefront. These generators have the ability to improve the overall system performance by reducing electrical losses and dependence on mechanical components. In conversion systems, the control by setting the system's instant work rate is defined as the maximum power point monitoring control. This control can ensure longer life and less expensive energy production by keeping the system’s production efficiency at the highest level according to instant wind. In this study, the basic principle of the wind energy conversion system and maximum power point monitoring control is explained. Intelligent control structure is defined as the foolish logic control modeled in the Matlab/Simulink environment and the analysis of the control structure through various system sizes has been carried out. This control structure ensures that the conversion system works more stable and efficiently according to the variable wind profile.

Keywords:

Intelligent Structure Based Modelling Of Maximum Power Control In Wind Energy Conversion Systems With Permanent Magnet Synchronous Generator
2021
Author:  
Abstract:

Wind energy is a renewable energy source increasingly used in electricity generation. System efficiency in electrical energy production from wind depends on the selection of suitable components and control technique. In this type of conversion systems, Permanent magnet synchronous generators, which can be used directly connected to variable speed wind turbines, come to the fore. These generators have the ability to increase overall system performance by reducing electrical losses and dependency on mechanical components. The control performed in conversion systems by adjusting the instant operating speed of the system is defined as the maximum power point tracking control. This control can provide more durable and less costly energy production by keeping the production efficiency of the system at the highest level according to the instant wind. In this study; wind energy conversion system and basic principle of maximum power point tracking control were explained. Fuzzy logic control, defined as an intelligent control structure, was analyzed based on various system parameters through modelling in Matlab/Simulink environment. This control structure enabled the conversion system to operate more stable and more efficiently according to the variable wind speed profile. 

Keywords:

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Avrupa Bilim ve Teknoloji Dergisi

Field :   Fen Bilimleri ve Matematik; Mühendislik

Journal Type :   Uluslararası

Metrics
Article : 3.175
Cite : 5.592
2023 Impact : 0.178
Avrupa Bilim ve Teknoloji Dergisi