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A vibroacoustic application of modeling and control of linear parameter-varying systems

机译:线性参数变化系统的建模和控制在振动声学中的应用

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This paper applies recent advances in both modeling and control of Linear Parameter-Varying (LPV) systems to a vibroacoustic setup whose dynamics is highly sensitive to variations in the temperature. Based on experimental data, an LPV model is derived for this system using the State-space Model Interpolation of Local Estimates (SMILE) technique. This modeling technique interpolates linear time-invariant models estimated at distinct operating conditions of the system (in this case, different temperatures). Using the obtained LPV model, gain-scheduled and robust multiobjective H2/H∞ state feedback controllers are designed such that can consider a priori known bounds on the rate of parameter variation. Numerical simulations using the closed-loop systems are performed to validate the controllers and to show the advantages and versatility of the proposed techniques.
机译:本文将线性参数变化(LPV)系统的建模和控制方面的最新进展应用于动态响应对温度变化高度敏感的振动声学装置。根据实验数据,使用局部估计的状态空间模型插值(SMILE)技术为该系统导出LPV模型。这种建模技术可对在系统的不同运行条件(在这种情况下,不同的温度)下估算的线性时不变模型进行插值。使用获得的LPV模型,设计了增益调度且鲁棒的多目标H2 /H∞状态反馈控制器,以便可以考虑参数变化率的先验已知范围。使用闭环系统进行了数值模拟,以验证控制器并显示所提出技术的优势和多功能性。

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