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Sensorless control of wind power generator with flywheel energy storage system

机译:风力发电机与飞轮储能系统无传感器控制

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摘要

For the purpose of sensorless low-speed control of direct-drive permanent magnet synchronous generator–based wind power systems, a technique based on the rotating high-frequency voltage-signal injection is discussed in this article, which improves the efficiency of the method and eliminates the phase shift introduced by traditional filters; band pass and low-pass filters are replaced by an extended complex Kalman filter algorithm. In addition, a flywheel energy storage system based on a squirrel cage induction machine is connected with the wind power generator by a DC bus through two power converters. For sensorless control of the induction machine, a rotor speed estimation method based on the extended complex Kalman filter is established. Finally, network connection interface of the complete system is presented and the efficiency of the proposed sensorless control of the whole chain of wind power generation is shown by numerical simulations using MATLAB/Simulink environment.
机译:出于无传感器永磁同步发电机的风电系统的无传感器低速控制,本文讨论了一种基于旋转高频电压信号注射的技术,这提高了方法的效率和 消除了传统过滤器引入的相移; 频带通行证和低通滤波器由扩展复杂的卡尔曼滤波器算法替换。 此外,基于鼠笼式感应机的飞轮储能系统通过两个功率转换器通过DC总线与风力发电机连接。 对于感应机的无传感器控制,建立了基于扩展复杂卡尔曼滤波器的转子速度估计方法。 最后,提出了完整系统的网络连接接口,并且通过使用MATLAB / Simulink环境的数值模拟显示了整个风力发电链式的所提出的传感器控制的效率。

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