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首页> 外文期刊>International Journal of Advanced Robotic Systems >Tracking performance and global stability guaranteed neural control of uncertain hypersonic flight vehicle
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Tracking performance and global stability guaranteed neural control of uncertain hypersonic flight vehicle

机译:跟踪性能和全球稳定性保证不确定超音速飞行车的神经控制

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摘要

In this article, a global adaptive neural dynamic surface control with predefined tracking performance is developed for a class of hypersonic flight vehicles, whose accurate dynamics is hard to obtain. The control scheme developed in this paper overcomes the limitations of neural approximation region by employing a switching mechanism which incorporates an additional robust controller outside the neural approximation region to pull the transient state variables back when they overstep the neural approximation region, such that globally uniformly ultimately bounded stability can be guaranteed. Especially, the developed global adaptive neural control also improves the tracking performance by introducing an error transformation mechanism, such that both transient and steady-state performance can be shaped according to the predefined bounds. Simulation studies on the hypersonic flight vehicle validate that the designed controller has good velocity modulation and velocity stability performance.
机译:在本文中,为一类超音速飞行车辆开发了一种具有预定义的跟踪性能的全局自适应神经动态表面控制,其准确的动态很难获得。本文开发的控制方案克服了神经逼近区域的局限通过采用在神经逼近区域外的附加鲁棒控制器外的切换机构来拉回瞬态状态变量,当它们超越神经逼近区域,使得全球均匀地最终有界稳定性可以得到保证。特别地,开发的全局自适应神经控制还通过引入误差变换机制来改善跟踪性能,使得瞬态和稳态性能可以根据预定义边界成形。超声波飞行车辆的仿真研究验证设计控制器具有良好的速度调制和速度稳定性性能。

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