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Interval Type-2 TSK Nominal-fuzzy-model-based Sliding Mode Controller Design for Flexible Air-breathing Hypersonic Vehicles

机译:间隔类型-2 TSK基于柔性空气呼吸车辆的滑模控制器设计基于基于的基于Fulzy模型的滑动模式控制器设计

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This paper presents a novel interval type-2 TSK nominal-fuzzy-model-based sliding mode controller (IT2-TSKNFMSMC) for flexible air-breathing hypersonic vehicle (FAHV) in order to stress robustness of the control system in dealing with data-driven based fuzzy modelling deviations, system uncertainty and disturbances. We adopt backstepping structure decomposing FAHV model into 5 control subsystems and design controllers, respectively. More specifically, two subsystems are designed with integral sliding mode model controllers. Another three subsystems which directly coupling with flexible mode disturbances are designed with IT2-TSK-NFMSMCs by the following steps: 1) interval type-2 TSK nominal-fuzzy-models (IT2-TSK-NFM) are generated automatically by using type-2 fuzzy self-organizing methods from experiment datasets; 2) nominal model sliding mode controllers are designed based on the IT2-TSK-NFM, respectively; 3) notch filters are adopted in order to decrease the disturbance effects from the flexible modes; 4) sliding mode compensation controllers are designed through Lyapunov synthesis in order to compensate differences between IT2-TSK-NFM and real models of the FAHV. Several scenarios are studied and the simulation results validate the robustness of the proposed controllers when there exist internal flexible vibration and external system disturbances.
机译:本文介绍了一种新型间隔类型-2TSK标称模糊模型的滑动模式控制器(IT2-TSKNFMSMC),用于灵活的空气呼吸超声波车辆(FAHV),以应对控制系统的鲁棒性处理数据驱动基于模糊建模偏差,系统不确定性和干扰。我们采用将FAHV模型分解为5个控制子系统和设计控制器的倒置结构。更具体地,两个子系统采用整体滑动模式模型控制器设计。另外三个子系统与灵活模式干扰直接耦合,通过以下步骤设计了IT2-TSK-NFMSMCS:1)间隔类型-2 TSK标称模糊模型(IT2-TSK-NFM)是通过类型-2自动生成的。来自实验数据集的模糊自组织方法; 2)标称模型滑模控制器分别根据IT2-TSK-NFM设计; 3)采用凹口滤波器以减少灵活模式的干扰效应; 4)滑模补偿控制器通过Lyapunov合成设计,以补偿IT2-TSK-NFM和FAHV的真实模型之间的差异。研究了若干场景,仿真结果验证了所提出的控制器的鲁棒性,当存在内部灵活的振动和外部系统干扰时。

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