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双馈风力发电系统的非线性解耦控制
引用本文:郭家虎,蔡旭,龚幼民. 双馈风力发电系统的非线性解耦控制[J]. 控制理论与应用, 2009, 26(9): 958-964
作者姓名:郭家虎  蔡旭  龚幼民
作者单位:郭家虎(安徽理工大学,电气与信息工程学院,安徽,淮南,232001;上海交通大学,电子信息与电气工程学院,上海,200030);蔡旭(上海交通大学,电子信息与电气工程学院,上海,200030);龚幼民(上海大学,机电工程与自动化学院,上海,200072) 
基金项目:上海市科教兴市项日资助项目,安徽高校省级自然科学研究项目 
摘    要:为了克服双馈风力发电系统基于近似线性化模型的分离控制方法动态性能差,抗扰能力弱的缺点,研究了双馈风力发电系统的精确线性化解耦控制.首先从电力电子装置与电机系统集成的角度,建立了双馈风力发电系统的统一模型;然后应川逆系统理论,推导出其逆系统模型,将其精确线性化成一个伪线性系统;最后运用内模控制理论对其进行综合以提高系统的鲁棒性,实现了双馈风力发电系统的高性能控制.仿真和实验结果表明,该控制策略不仅可以加快系统的响应速度.保证系统的全局稳定性,而且还可以减少所需的直流滤波储能电容,提高系统可靠性.

关 键 词:双馈风力发电系统  统一模型  逆系统理论  内模控制  精确线性化
收稿时间:2008-05-08
修稿时间:2008-12-12

Nonlinear control of wind power generation based on DFIG
Guo Jiahu,CAI Xu and GONG You-ming. Nonlinear control of wind power generation based on DFIG[J]. Control Theory & Applications, 2009, 26(9): 958-964
Authors:Guo Jiahu  CAI Xu  GONG You-ming
Affiliation:School of Electrical and information Engineering, Anhui University of Science and Technology; School of Electronic, Information and Electrical Engineering, Shanghai Jiao Tong University,School of Electronic, Information and Electrical Engineering, Shanghai Jiao Tong University,School of Mechatronics Engineering and Automation, Shanghai University
Abstract:To deal with the undesirable performance and the low disturbance-rejection of the separated control for a double-fed induction generation(DFIG) based on a simplified model; we propose an accurately linearized decoupling control for the DFIG. First, we develop an integrated model for the assembly of electronic devices and the DFIG, and then, derive its inverse model by using the inverse system theory. This inverse model is then accurately linearized and installed in front of the original system. Thus, a pseudo linear system is developed, which is then synthesized based on the internal-model-control(IMC) theory to improve the robustness, realizing a high-performance control for the DFIG.Simulation results and experimental data validate the desirable performance and high robustness, the suppression of dc-bus voltage fluctuations, the reduction of the size of electrolytic capacitor, and the enhancement of the reliability of the wind generation system.
Keywords:DFIG system   unified model   inverse system   internal model control   exact linearization
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