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Modal Matching for LPV Model Reduction of Aeroservoelastic Vehicles

机译:航空弹道车辆LPV模型简化的模态匹配

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A model order reduction method is proposed for models of aeroservoelastic vehicles in the linear parameter-varying (LPV) systems framework, based on state space interpolation of modal forms. The dynamic order of such models is usually too large for control synthesis and implementation since they combine rigid body dynamics, structural dynamics and unsteady aerodynamics. Thus, model order reduction is necessary. For linear time-invariant (LTI) models, order reduction is often based on balanced realizations. For LPV models, this requires the solution of a large set of linear matrix inequalities (LMIs), leading to numerical issues and high computational cost. The proposed approach is to use well developed and numerically stable LTI techniques for reducing the LPV model locally and then to transform the resulting collection of systems into a consistent modal representation suitable for interpolation. The method is demonstrated on an LPV model of the body freedom flutter vehicle, reducing the number of states from 148 to 15. The accuracy of the reduced order model (ROM) is confirmed by evaluating the υ-gap metric with respect to the full order model and by comparison to another ROM obtained by state-of-the-art LPV balanced truncation techniques.
机译:提出了一种基于模态的状态空间插值的线性变参(LPV)系统框架下的航空弹道车辆模型降阶方法。由于这些模型结合了刚体动力学,结构动力学和非定常空气动力学,因此对于控制综合和实现而言,这些模型的动态顺序通常太大。因此,必须减少模型阶数。对于线性时不变(LTI)模型,降阶通常基于平衡的实现。对于LPV模型,这需要解决大量线性矩阵不等式(LMI)的问题,从而导致数值问题和高计算成本。所提出的方法是使用发达且数值稳定的LTI技术来局部降低LPV模型,然后将所得的系统集合转换为适合于插值的一致模态表示。该方法在无人驾驶飞行器的LP​​V模型上进行了演示,将状态数从148个减少到15个。通过评估相对于整个顺序的υ-gap度量,可以确认降阶模型(ROM)的准确性。与最先进的LPV平衡截断技术获得的另一个ROM进行比较。

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