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LPV Modeling of a Flexible Wing Aircraft Using Modal Alignment and Adaptive Gridding Methods

机译:使用模态对准和自适应网格方法对柔性翼飞机进行LPV建模

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摘要

One of the earliest approaches in gain-scheduling control is the gridding based approach, in which a set of local linear time-invariant models are obtained at various gridded points corresponding to the varying parameters within the flight envelop. In order to ensure smooth and effective Linear Parameter-Varying control, aligning all the flexible modes within each local model and maintaining small number of representative local models over the gridded parameter space are crucial. In addition, since the flexible structural models tend to have large dimensions, a tractable model reduction process is necessary. In this paper, the notion of σ-shifted ℋ2- and ℋ∞-norm are introduced and used as a metric to measure the model mismatch. A new modal alignment algorithm is developed which utilizes the defined metric for aligning all the local models over the entire gridded parameter space. Furthermore, an Adaptive Grid Step Size Determination algorithm is developed to minimize the number of local models required to represent the gridded parameter space. For model reduction, we propose to utilize the concept of Composite Modal Cost Analysis, through which the collective contribution of each flexible mode is computed and ranked. Therefore, a reduced-order model is constructed by retaining only those modes with significant contribution. The NASA Generic Transport Model operating at various flight speeds is studied for verification purpose, and the analysis and simulation results demonstrate the effectiveness of the proposed modeling approach.
机译:增益调度控制中最早的方法之一是基于网格的方法,其中在与飞行包络内的变化参数相对应的各个网格点上获得一组局部线性时不变模型。为了确保平稳有效的线性参数变化控制,在每个局部模型内对齐所有灵活模式并在网格化参数空间上保持少量代表性局部模型至关重要。另外,由于柔性结构模型倾向于具有大尺寸,因此需要易于处理的模型简化过程。本文介绍了σ偏移的ℋ2-和ℋ∞-范数的概念,并将其用作度量模型失配的度量。开发了一种新的模态对齐算法,该算法利用定义的度量在整个网格化参数空间上对齐所有局部模型。此外,开发了一种自适应网格步长确定算法,以最小化表示网格化参数空间所需的局部模型的数量。对于模型简化,我们建议利用“复合模态成本分析”的概念,通过该概念可以计算和排序每个灵活模式的集体贡献。因此,通过仅保留那些具有重大贡献的模式来构建降阶模型。为了验证目的,研究了在各种飞行速度下运行的NASA通用运输模型,分析和仿真结果证明了所提出的建模方法的有效性。

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