ANALYSIS OF STRUCTURES AND DYNAMIC OF WIND GENERATOR CONTROL SYSTEMS

V. Nerubatskyi, O. A. Plakhtii, D. Hordiienko, H. Khoruzhevskyi, R. Kharin
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Abstract

The dynamics of the development of alternative power sources over the past severaldecades are presented, which gives reason to talk about the trends in the further development of windenergy. An analysis of the structures and technical characteristics of wind generators classifiedaccording to the international standard IEC 61400 is given. According to the classification of theinternational standard IEC 61400, the structures of wind generators are presented, namely, types ofelectric motors, power circuits of semiconductor converters that provide the generation of electricalenergy to the general industrial electrical network. The use of power electronics in various types ofwind turbine generation systems and offshore wind farms provides improved wind turbineperformance. Semiconductor converters are used in frequency and voltage control to regulate activeand reactive powers. The issue of the possibility of operation of wind generators in wide wind ranges,the issue of emission of reactive power and higher harmonics of currents to the general industrialelectrical network, as well as the issue of efficiency of various structures of wind generators areconsidered. A wind turbine control system with an asynchronous generator is proposed. A study oftransient control processes and energy compatibility of a full energy conversion wind turbine with apower supply network by simulation computer modeling in the Matlab / Simulink softwareenvironment is given. The obtained result indicates the fundamental possibility of operation of anasynchronous generator with a short-circuited rotor as part of a wind turbine operating in conditionsof variable wind speed. The proposed layout of the wind turbine with full energy conversion allowspower to be delivered to the AC grid at a variable frequency of rotation of the wind motor shaft,which allows to increase the control range and maximize the generated power at low wind speeds.
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风力发电机控制系统结构与动力学分析
本文介绍了过去几十年来替代能源发展的动态,并给出了讨论风能进一步发展趋势的理由。分析了按照国际标准IEC 61400分类的风力发电机的结构和技术特点。根据国际标准IEC 61400的分类,介绍了风力发电机的结构,即电动机的类型,为一般工业电网提供电能的半导体变换器的电源电路。在各种类型的风力涡轮机发电系统和海上风力发电场中使用电力电子设备可以改善风力涡轮机的性能。半导体变换器用于频率和电压控制,以调节有功和无功功率。考虑了风力发电机在大风量范围内运行的可能性问题,向一般工业电网发射无功功率和高次谐波的问题,以及风力发电机各种结构的效率问题。提出了一种采用异步发电机的风力发电机组控制系统。在Matlab / Simulink软件环境下对全能转换风力发电机组的暂态控制过程和能量兼容性进行了仿真研究。所得结果表明,转子短路的异步发电机作为风力机的一部分,在变风速条件下运行的基本可能性。建议的全能量转换风力机布局允许以风力电机轴的可变旋转频率向交流电网输送电力,这可以增加控制范围并在低风速下最大化发电功率。
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