控制理论(社会学)
滑模控制
稳健性(进化)
涡轮机
变结构控制
离散时间和连续时间
工程类
风力发电
鲁棒控制
计算机科学
控制工程
控制系统
数学
非线性系统
控制(管理)
物理
机械工程
生物化学
化学
统计
电气工程
量子力学
人工智能
基因
作者
Chaker Zaafouri,Borhen Torchani,Anis Sellami,Germain García
摘要
Abstract The aim of this paper is to propose a new design variable speed wind turbine control by discrete‐time sliding mode approach. The control objective is to obtain a maximum extraction of wind energy, while reducing mechanical loads and rotor speed tracking combined with an electromagnetic torque. For this application, we designed a discrete time sliding mode control using the equivalent discrete time reaching law. Furthermore, a systematic and improved design procedure for uncertainties discrete‐time sliding mode control (SMC) with saturation problem is provided in this paper. The saturation constraint is reported on inputs vector. LMI technique and polytopic models are used in the design of the switching surface. To achieve some performance requirements and good robustness, in the sliding mode, the pole clustering method is investigated. Based on the unit vector control approach, a robust control is developed, then, to direct and maintain the system states onto the sliding manifold in finite time. Finally, a systematic design procedure for DSMC required to achieve a given performance level is provided and its effectiveness is varied by applying it to variable speed wind turbine systems.
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