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Advanced gain-scheduling techniques for uncertain systems

机译:不确定系统的高级增益调度技术

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This paper is concerned with the design of gain-scheduled controllers for uncertain linear parameter-varying systems. Two alternative design techniques for constructing such controllers are discussed. Both techniques are amenable to linear matrix inequality problems via a gridding of the parameter space and a selection of basis functions. These problems are then readily solvable using available tools in convex semidefinite programming. When used together, these techniques provide complementary advantages of reduced computational burden and ease of controller implementation. The problem of synthesis for robust performance is then addressed by a new scaling approach for gain-scheduled control. The validity of the theoretical results are demonstrated through a two-link flexible manipulator design example. This is a challenging problem that requires scheduling of the controller in the manipulator geometry and robustness in face of uncertainty in the high-frequency range.
机译:本文涉及不确定线性参数变化系统的增益调度控制器的设计。讨论了用于构造这种控制器的两种替代设计技术。通过参数空间的网格化和基函数的选择,这两种技术都适用于线性矩阵不等式问题。然后,可以使用凸半定编程中的可用工具轻松解决这些问题。当一起使用时,这些技术可提供互补的优势,即减少计算负担并简化控制器的实现。然后通过用于增益调度控制的新缩放方法解决了用于鲁棒性能的综合问题。通过两连杆柔性机械臂设计实例证明了理论结果的有效性。这是一个具有挑战性的问题,需要在操纵器几何形状中安排控制器的调度,并且要面对高频范围内的不确定性而具有鲁棒性。

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