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首页> 外文期刊>International Journal of Control >Structurally dynamic wavelet networks for adaptive control of robotic systems
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Structurally dynamic wavelet networks for adaptive control of robotic systems

机译:结构动态小波网络用于机器人系统的自适应控制

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摘要

The practical applicability of recently developed adaptive neurocontrol algorithms for poorly modelled robotic systems depends crucially upon the accuracy and efficiency of the neural network used to approximate the functions required for accurate control of the system. Recently, drawing upon results from multiresolution approximation theory, an algorithm has been developed which dynamically varies the actual structure of the network concurrently with its associated parameters, and, in the process, stably evolves a minimal network which still provides the required accuracy. In this paper, we extend these ideas to the adaptive control of robot manipulators, providing a formal proof of the stability and convergence properties of our new algorithm. A main feature of the proof is the demonstration that the stability properties of the algorithm are independent of the specific mechanism used to vary the structure of the network, allowing great flexibility in the design of the structure adaptation mechanism. A specific structural adaptation mechanism is suggested, representing a real-time approximation to a new nonparametric estimation technique, and its performance is then demonstrated on a simulation of a free-floating space robotic manipulator. [References: 27]
机译:最近开发的适应性神经控制算法在建模欠佳的机器人系统中的实际应用至关重要,这主要取决于神经网络的准确性和效率,该神经网络用于逼近系统的精确控制所需的功能。最近,利用多分辨率逼近理论的结果,开发了一种算法,该算法可动态地同时更改网络的实际结构及其相关参数,并在此过程中稳定地发展出仍可提供所需精度的最小网络。在本文中,我们将这些思想扩展到机器人操纵器的自适应控制,为我们的新算法的稳定性和收敛性提供了形式证明。证明的主要特征是证明了算法的稳定性是独立于用于改变网络结构的特定机制的,从而在结构自适应机制的设计中具有极大的灵活性。提出了一种特定的结构自适应机制,该机制表示对新的非参数估计技术的实时近似,然后在自由浮动空间机器人操纵器的仿真中证明了其性能。 [参考:27]

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