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Effects of actuator dynamics on disturbance rejection for small multi-rotor UAS

机译:执行器动力学对小型多转子UA干扰抑制的影响

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Small multi-rotor unmanned aircraft systems have many potential applications within urban environments, but large-scale turbulence common in such environments can represent a significant difficulty for their operation. Actuator dynamics affect on an aircraft's ability to track attitude commands and may influence its ability to reject disturbances. This paper presents a study of the effects of actuator dynamics on a small quadrotor model generated through system identification. A performance-based optimisation that minimises attitude-tracking errors in the presence of disturbances is used. System identification of different combinations of actuator components is performed, and the data is used to investigate the effects of high-frequency actuator dynamics on control-system phase lag and to determine their impact on disturbance rejection performance.
机译:小型多转子无人机系统在城市环境中具有许多潜在的应用,但这种环境中常见的大规模湍流可以代表其操作的重要困难。执行器动力学对飞机跟踪态度命令的能力,并可能影响其拒绝干扰的能力。本文介绍了执行器动力学对通过系统识别产生的小型四电石模型的影响研究。基于性能的优化,最大限度地使用在存在干扰时最小化姿态跟踪误差。执行致动器组件的不同组合的系统识别,并且数据用于研究高频执行器动力学对控制系统阶段滞后的影响,并确定它们对扰动抑制性能的影响。

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