首页> 外文会议>Fifth World Congress on Intelligent Control and Automation(WCICA 2004) vol.6 >Sliding Mode Control of BTT Missile Based on Fuzzy-Neural Approach
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Sliding Mode Control of BTT Missile Based on Fuzzy-Neural Approach

机译:基于模糊神经网络的BTT导弹滑模控制

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A novel adaptive fuzzy-neural sliding mode control scheme was proposed for missile control systems with a general set of uncertainties. Firstly, The effect of the uncertainties was synthesized one term in the design procedure. Then fuzzy-neural approximators were designed to approximate the uncertainty function. Considering the known information, adaptive fuzzy-neural control theory and sliding mode control were used to deal with the design problem when control coefficient matrices were unknown. This method avoids the possible singularities of the controller. The Lyapunov stability theory was used to guarantee the closed-loop stability and derive adaptive tuning rules for updating the parameters of the fuzzy-neural approximators. Finally, nonlinear 6-DOF numerical simulation results were presented to demonstrate the effectiveness of the proposed method.
机译:针对具有一般不确定性的导弹控制系统,提出了一种新颖的自适应模糊神经滑模控制方案。首先,在设计过程中将不确定性的影响综合了一项。然后设计了模糊神经近似器来近似不确定性函数。考虑到已知信息,当控制系数矩阵未知时,采用自适应模糊神经控制理论和滑模控制来解决设计问题。这种方法避免了控制器可能出现的奇异之处。利用李雅普诺夫稳定性理论来保证闭环稳定性,并导出自适应调整规则以更新模糊神经近似器的参数。最后,给出了非线性6-DOF数值模拟结果,证明了该方法的有效性。

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