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首页> 外文期刊>International Journal of Advanced Robotic Systems >Adaptive fuzzy tracking control for a constrained flexible air-breathing hypersonic vehicle based on actuator compensation
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Adaptive fuzzy tracking control for a constrained flexible air-breathing hypersonic vehicle based on actuator compensation

机译:基于致动器补偿的受限柔性空气呼吸超声波汽车自适应模糊跟踪控制

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摘要

The design of an adaptive fuzzy tracking control for a flexible air-breathing hypersonic vehicle with actuator constraints is discussed. Based on functional decomposition methodology, velocity and altitude controllers are designed. Fuzzy logic systems are applied to approximate the lumped uncertainty of each subsystem of air-breathing hypersonic vehicle model. Every controllers contain only one adaptive parameter that needs to be updated online with a minimal-learning-parameter scheme. The back-stepping design is not demanded by converting the altitude subsystem into the normal output-feedback formulation, which predigests the design of a controller. The special contribution is that novel auxiliary systems are developed to compensate both the tracking errors and desired control laws, based on which the explored controller can still provide effective tracking of velocity and altitude commands when the inputs are saturated. Finally, reference trajectory tracking simulation shows the effectiveness of the proposed method in its application to air-breathing hypersonic vehicle control.
机译:讨论了具有致动器约束的柔性空气呼吸超声波车辆的自适应模糊跟踪控制的设计。基于功能分解方法,设计了速度和高度控制器。模糊逻辑系统应用于近似空气呼吸超声波车辆模型的每个子系统的集体不确定性。每个控制器只包含一个需要在线更新的一个自适应参数,最小学习参数方案。通过将高度子系统转换为正常输出反馈配方,不要求背部步进设计,这预先测试了控制器的设计。特殊贡献是开发了新颖的辅助系统,以补偿跟踪误差和所需的控制定律,基于该探索控制器仍然可以在输入饱和时提供有效跟踪速度和高度命令。最后,参考轨迹跟踪仿真显示了所提出的方法在空气呼吸超声波车辆控制的应用中的有效性。

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