论文标题
不确定系统的稳健固定顺序控制器设计具有广义共同的Lyapunov严格的正面表征
Robust Fixed-Order Controller Design for Uncertain Systems with Generalized Common Lyapunov Strictly Positive Realness Characterization
论文作者
论文摘要
本文研究了具有间隔不确定性的单输入单输出(SISO)多型系统的稳健固定顺序控制器的设计,其目的是适当确保闭环稳定性适当地确保敏感性形状的性能规格在特定的有限频率中符合敏感性。通过严格的积极现实(CL-SPR)的概念,建立了严格的积极现实(SPRNNESS)与严格界限现实(SBR)之间的等效性;然后,对稳健稳定性和性能的规格转化为新建系统的SPRNESS,并在线性矩阵不等式(LMI)条件的框架中进一步表征。所提出的方法避免了对不确定多元系统的所有顶点的规格进行乏味但强制性的评估。取而代之的是,解决五个LMI仅足以确保稳健的稳定性和性能,而不管顶点的数量如何,因此通常会大大减轻典型的计算负担。还值得注意的是,拟议的方法还为这种可靠的控制器设计提供了必要和足够的条件,并考虑了规定的有限频率范围,因此,在系统性能中,保守主义明显降低了。
This paper investigates the design of a robust fixed-order controller for single-input-single-output (SISO) polytopic systems with interval uncertainties, with the aim that the closed-loop stability is appropriately ensured and the performance specifications on sensitivity shaping are conformed in a specific finite frequency range. Utilizing the notion of generalized common Lyapunov strictly positive realness (CL-SPRness), the equivalence between strictly positive realness (SPRness) and strictly bounded realness (SBRness) is established; and then the specifications on robust stability and performance are transformed into the SPRness of newly constructed systems and further characterized in the framework of linear matrix inequality (LMI) conditions. The proposed methodology avoids the tedious yet mandatory evaluations of the specifications on all vertices of the uncertain polytopic system in an explicit form. Instead, solving five LMIs exclusively suffices for ensuring the robust stability and performance regardless of the number of vertices, and thus the typically heavy computational burden is considerably alleviated. It is also noteworthy that the proposed methodology additionally provides the necessary and sufficient conditions for this robust controller design with the consideration of a prescribed finite frequency range, and therefore significantly less conservatism is attained in the system performance.