A self-tuning PID control for a wind energy conversion system based on the Lyapunov approach

M. Sedighizadeh, A. Rezazadeh, M. Khatibi
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引用次数: 13

Abstract

Nonlinear characteristics of wind turbines and electric generators necessitate that grid connected wind energy conversion systems (WECS) use nonlinear controls. In this paper, we will propose a self-tuning PID control based on Lyapunov approach for WECS control. This self-tuning PID control is founded on the combination of two controllers, i.e. a self-tuning PID controller, which drives the tracking error to zero with user specified dynamics, and a supervisory controller, based on crude bounds of the systempsilas nonlinearities. The supervisory controller guarantees the stability of closed-loop nonlinear PID control system. The form of the supervisory control and the adaptation law are derived from a Lyapunov analysis of stability. The results are applied to a typical WECS, presenting the ability of the proposed method.
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基于Lyapunov方法的风能转换系统自整定PID控制
风力发电机组和发电机的非线性特性要求并网风能转换系统采用非线性控制。在本文中,我们将提出一种基于Lyapunov方法的自整定PID控制。这种自整定PID控制是建立在两个控制器的组合上,即一个自整定PID控制器,它在用户指定的动态情况下驱动跟踪误差为零,一个基于系统非线性的粗界的监督控制器。监控控制器保证了闭环非线性PID控制系统的稳定性。监督控制的形式和自适应律由李亚普诺夫稳定性分析推导而来。将结果应用于典型的WECS,验证了该方法的有效性。
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