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Interpolation-Based Modeling of MIMO LPV Systems

机译:基于插值的MIMO LPV系统建模

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摘要

This paper presents State-space Model Interpolation of Local Estimates (SMILE), a technique to estimate linear parameter-varying (LPV) state-space models for multiple-input multiple-output (MIMO) systems whose dynamics depends on multiple time-varying parameters, called scheduling parameters. The SMILE technique is based on the interpolation of linear time-invariant models estimated for constant values of the scheduling parameters. As the linear time-invariant models can be either continuous- or discrete-time, both continuous- and discrete-time LPV models can be obtained. The underlying interpolation technique is formulated as a linear least-squares problem that can be efficiently solved. The proposed technique yields homogeneous polynomial LPV models in the multi-simplex that are numerically well-conditioned and therefore suitable for LPV control synthesis. The potential of the SMILE technique is demonstrated by computing a continuous-time interpolating LPV model for an analytic mass-spring-damper system and a discrete-time interpolating LPV model for a mechatronic $XY$-motion system based on experimental data.
机译:本文介绍了局部估计的状态空间模型插值(SMILE),这是一种为动态性取决于多个时变参数的多输入多输出(MIMO)系统估计线性参数变化(LPV)状态空间模型的技术,称为调度参数。 SMILE技术基于为调度参数的恒定值估算的线性时不变模型的插值。由于线性时不变模型可以是连续时间或离散时间,因此可以获得连续时间和离散时间LPV模型。基本的插值技术被表述为可以有效解决的线性最小二乘问题。所提出的技术在多重单项中产生均质多项式LPV模型,其数值条件良好,因此适用于LPV控制综合。通过基于实验数据计算用于分析质量-弹簧-阻尼器系统的连续时间插值LPV模型和用于机电$ XY $运动系统的离散时间插值LPV模型,可以证明SMILE技术的潜力。

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