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Multi-Timescale Nonlinear Robust Control for a Miniature Helicopter

机译:用于微型直升机的多时间尺度非线性鲁棒控制

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This paper proposes a new nonlinear control approach which is applied to a miniature aerobatic helicopter through a multi-timescale structure. To deal with inherent unstable internal dynamics, the translational, rotational, and flapping dynamics of the helicopter are organized into a three-timescale nonlinear model. The concepts of dynamic inversion and sliding manifold are combined together. Part of the uncertainties is explicitly taken into account in the nonlinear robust control design, and Monte Carlo simulations are used for validations under other sensor noises and model uncertainties.
机译:本文提出了一种新的非线性控制方法,其通过多时间尺度结构施加到微型有氧直升机。为了处理固有的不稳定内部动态,直升机的平移,旋转和拍打动态被组织成三个时间尺度的非线性模型。动态反转和滑动歧管的概念在一起组合在一起。在非线性鲁棒控制设计中明确考虑了部分不确定性,并且蒙特卡罗模拟用于在其他传感器噪声和模型不确定性下的验证。

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