LPV polytopic modelling and stability analysis of a DFIG for a wind energy conversion system based on LMI approach

S. Salhi, N. Aouani, S. Salhi
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引用次数: 3

Abstract

A state space model of a dynamical system is commonly obtained from algebraic handling of its physic equations, which involve often-approximate parameter values due to imperfect knowledge of system components or variable parameters in time. These parameters are referred to as uncertainties. The modelling of uncertain systems is relevant in stability analysis methods such as Lyapunov theory. In addition, in robust control synthesis, the more information the model gives about uncertain parameter dynamics i.e. its value bounds and its variation rates, the best their performances are enhanced. Since the Linear Matrix Inequalities (LMI) approach has been introduced in the analysis and the control of complex systems, modelling parameter dependent systems is also relevant in the formulation and the resolution of LMIs. This paper is focused on the equivalence between Linear Parameter Varying (LPV) modelling of a Doubly Fed Induction Generator (DFIG) of a Wind Energy Conversion System use under both affine and polytopic structures. The stability analysis based on LMI approach is also carried out.
基于LMI方法的风电转换系统DFIG LPV多面体建模及稳定性分析
动力系统的状态空间模型通常是通过对其物理方程的代数处理得到的,由于对系统组件或变量参数的不完全了解,这些物理方程通常涉及近似的参数值。这些参数称为不确定度。不确定系统的建模与李亚普诺夫理论等稳定性分析方法有关。此外,在鲁棒控制综合中,模型给出的不确定参数动态信息(即参数的取值范围和变化率)越多,其性能越好。由于线性矩阵不等式(LMI)方法已被引入到复杂系统的分析和控制中,因此对参数相关系统的建模也与LMI的制定和求解有关。本文研究了仿射和多面体结构下双馈感应发电机(DFIG)的线性参数变化(LPV)模型的等价性。基于LMI方法进行了稳定性分析。
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