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首页> 外文期刊>Journal of power electronics >Design and Experimental Validation of a Digital Predictive Controller for Variable-Speed Wind Turbine Systems
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Design and Experimental Validation of a Digital Predictive Controller for Variable-Speed Wind Turbine Systems

机译:变速风力涡轮机系统数字预测控制器的设计与实验验证

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摘要

Advanced control algorithms must be used to make wind power generation truly cost effective and reliable. In this study, we develop a new and simple control scheme that employs model predictive control (MPC), which is used in permanent magnet synchronous generators and grid-connected inverters. The proposed control law is based on two points, namely, MPC-based torque current control loop is used for the generator-side converter to reach the maximum power point of the wind turbine, and MPC-based direct power control loop is used for the grid-side converter to satisfy the grid code and help improve system stability. Moreover, a simple prediction scheme is developed for the direct-drive wind energy conversion system (WECS) to reduce the computation burden for real-time applications. A small-scale WECS laboratory prototype is built and evaluated to verify the validity of the developed control methods. Acceptable results are obtained from the real-time implementation of the proposed MPC methods for WECS.
机译:必须使用先进的控制算法来使风力发电真正具有成本效益和可靠性。在这项研究中,我们开发了一种采用模型预测控制(MPC)的新的简单控制方案,该方案用于永磁同步发电机和并网逆变器中。所提出的控制律是基于两点的,即基于MPC的转矩电流控制回路用于发电机侧变流器,以达到风力涡轮机的最大功率点,而基于MPC的直接功率控制回路用于两点。网格侧转换器,以满足网格代码并帮助提高系统稳定性。此外,针对直接驱动风能转换系统(WECS)开发了一种简单的预测方案,以减少实时应用的计算负担。建立并评估了一个小型WECS实验室原型,以验证所开发控制方法的有效性。从WECS的MPC方法的实时实施中可以获得可接受的结果。

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