Control of a Wind Power Plant with a Synchronous Permanent Magnet Generator and a Magnetic Variator

A. Achitaev, Konstantin A. Barkhatov, S. N. Udalov
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Abstract

Currently, the use of wind power plants with magnetic speed reduction is beginning to develop in the world literature. Features of the application of these systems in combination with a wind power plant allows you to solve the issue of its interface with the electric power system. The controlled flexible connection between the turbine and the generator makes it possible to coordinate the control of the load angle of the synchronous generator. In this paper, we consider a developed controller that provides integrated control of a wind turbine with a magnetic variator with a variable pitch of the blade angle and a variable speed of rotation of the wind turbine. A promising direction for the construction of wind power systems is currently the use of electromagnetic variators as part of wind power plants. This work is devoted to the study of electric power systems that include wind turbines with electromagnetic variators. The variator is built between the wind turbine and the generator, instead of a mechanical gearbox. The high-speed change in the torque of the electromagnetic variator allows you to keep the speed of the generator. Due to the inherent non-linearity of the wind turbine and CVT, a set of operational and emergency modes was defined and then the controller was designed for each operating point. In addition, the aerodynamic torque and effective wind speed are estimated online and a planned variable schedule for the controller implementation is obtained. Was tested by simulating with MATLAB/Simulink
用同步永磁发电机和磁变器控制风力发电厂
目前,利用磁力减速的风力发电厂在世界文献中刚刚开始发展。这些系统的应用特点与风力发电厂相结合,可以解决其与电力系统的接口问题。水轮机与发电机之间的可控柔性连接,使同步发电机负载角的协调控制成为可能。在本文中,我们考虑了一种开发的控制器,该控制器提供了风力机的集成控制,该控制器具有可变桨距的叶片角和可变转速的风力机。目前风力发电系统建设的一个有前途的方向是将电磁变矩器作为风力发电厂的一部分。这项工作致力于电力系统的研究,包括风力涡轮机与电磁变压器。该变压器安装在风力涡轮机和发电机之间,而不是机械齿轮箱。电磁变矩器转矩的高速变化使您可以保持发电机的速度。针对风力机和无级变速器固有的非线性特性,定义了一组运行模式和应急模式,并针对每个工作点设计了控制器。此外,在线估计了气动扭矩和有效风速,并得到了控制器实施的计划变量时间表。用MATLAB/Simulink
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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