Abbas Hossam S, Tóth Roland, Petreczky Mihály, Meskin Nader, Mohammadpour Velni Javad, Koelewijn Patrick J W
Institute for Electrical Engineering in Medicine University of Lübeck Lübeck Germany.
Electrical Engineering Department, Faculty of Engineering Assiut University Assiut Egypt.
Int J Robust Nonlinear Control. 2021 Dec;31(18):9436-9465. doi: 10.1002/rnc.5799. Epub 2021 Oct 4.
This article introduces a systematic approach to synthesize linear parameter-varying (LPV) representations of nonlinear (NL) systems which are described by input affine state-space (SS) representations. The conversion approach results in LPV-SS representations in the observable canonical form. Based on the relative degree concept, first the SS description of a given NL representation is transformed to a normal form. In the SISO case, all nonlinearities of the original system are embedded into one NL function, which is factorized, based on a proposed algorithm, to construct an LPV representation of the original NL system. The overall procedure yields an LPV model in which the scheduling variable depends on the inputs and outputs of the system and their derivatives, achieving a practically applicable transformation of the model in case of low order derivatives. In addition, if the states of the NL model can be measured or estimated, then a modified procedure is proposed to provide LPV models scheduled by these states. Examples are included to demonstrate both approaches.
本文介绍了一种系统方法,用于合成由输入仿射状态空间(SS)表示描述的非线性(NL)系统的线性参数变化(LPV)表示。该转换方法产生可观规范形式的LPV-SS表示。基于相对度概念,首先将给定NL表示的SS描述转换为规范形式。在单输入单输出(SISO)情况下,原始系统的所有非线性都嵌入到一个NL函数中,该函数基于一种提出的算法进行因式分解,以构建原始NL系统的LPV表示。整个过程产生一个LPV模型,其中调度变量取决于系统的输入和输出及其导数,在低阶导数的情况下实现模型的实际适用转换。此外,如果NL模型的状态可以测量或估计,则提出一种修改后的过程,以提供由这些状态调度的LPV模型。文中包含示例以演示这两种方法。