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变风速下双馈感应发电机非线性鲁棒状态估计反馈控制 被引量:9
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作者 杨博 束洪春 +3 位作者 邱大林 朱德娜 韩一鸣 余涛 《电力系统自动化》 EI CSCD 北大核心 2019年第4期60-69,共10页
风速的强随机性与风力发电机建模的不确定性给风力发电系统的优化运行带来了极大的挑战。文中设计了一种新型非线性鲁棒状态估计反馈控制(NRSEFC),从而实现双馈感应发电机的最大功率点跟踪。首先,将风轮机的非线性、发电机参数不确定性... 风速的强随机性与风力发电机建模的不确定性给风力发电系统的优化运行带来了极大的挑战。文中设计了一种新型非线性鲁棒状态估计反馈控制(NRSEFC),从而实现双馈感应发电机的最大功率点跟踪。首先,将风轮机的非线性、发电机参数不确定性以及随机风速的综合影响聚合为一个扰动,同时应用一个滑动模态状态扰动观测器对该扰动进行实时快速估计。随后,将该扰动估计值作为附加控制分量加入状态估计反馈控制中进行在线完全补偿。NRSEFC兼具状态反馈线性控制的结构简单、可靠性高以及非线性鲁棒控制的控制全局一致性和鲁棒性强等双方优点,不依赖于双馈感应发电机系统精确模型且仅需测量转子角速度和无功功率两个状态量。基于阶跃风速、随机风速、发电机参数测量误差以及机端电压跌落4个算例的仿真结果验证了NRSEFC的有效性和鲁棒性。最后,基于dSpace的硬件在环实验验证了所提算法的实际应用性能。 展开更多
关键词 双馈感应发电机 最大功率点跟踪 状态估计反馈控制 硬件在环实验
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Output Feedback Nonlinear General Integral Control
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作者 Baishun Liu 《International Journal of Modern Nonlinear Theory and Application》 2015年第2期101-116,共16页
This paper proposes an output feedback nonlinear general integral controller for a class of uncertain nonlinear system. By solving Lyapunov equation, we demonstrate a new proposition on Equal ratio gain technique. By ... This paper proposes an output feedback nonlinear general integral controller for a class of uncertain nonlinear system. By solving Lyapunov equation, we demonstrate a new proposition on Equal ratio gain technique. By using Equal ratio gain technique, Singular perturbation technique and Lyapunov method, theorem to ensure regionally as well as semi-globally exponential stability is established in terms of some bounded information. Moreover, a real time method to evaluate the ratio coefficients of controller and observer are proposed such that their values can be chosen moderately. Theoretical analysis and simulation results show that not only output feedback nonlinear general integral control has the striking robustness but also the organic combination of Equal ratio gain technique and Singular perturbation technique constitutes a powerful tool to solve the output feedback control design problem of dynamics with the nonlinear and uncertain actions. 展开更多
关键词 General INTEGRAL control Nonlinear control Robust control OUTPUT feedback control Equal Ratio Gain TECHNIQUE SINGULAR Perturbation TECHNIQUE state estimation INTEGRAL Observer OUTPUT Regulation
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