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Robust Guaranteed Cost Output-Feedback Gain-Scheduled Controller Design

机译:强大的保证成本输出 - 反馈增益预定控制器设计

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In the paper a new robust guaranteed cost output-feedback gain-scheduled PID controller design technique is presented for affine linear parameter-varying systems under polytopic model uncertainty, with the assumption that the scheduled parameters are affected with absolute uncertainty. The proposed centralized or decentralized method is based on the Bellman-Lyapunov equation, guaranteed cost, and parameter-dependent quadratic stability. The robust stability and performance conditions are translated to an optimization problem subject to bilinear matrix inequalities, which can be solved or further linearized. As the main result, the suggested stability and performance conditions without any restrictions on the controller structure are convex functions of the scheduling and uncertainty parameters. Hence, there is no need for applying multi-convexity or other relaxation techniques and consequently the proposed solution delivers a less conservative design method. The viability of the novel design technique is demonstrated and evaluated through numerical examples.
机译:在本文中,新的强大的保证成本输出 - 反馈增益预定的PID控制器设计技术在多拓模型不确定性下,为仿射线性参数变化系统提供了仿射线性参数变化系统,假设预定参数受到绝对不确定性的影响。所提出的集中或分散的方法基于Bellman-Lyapunov方程,保证成本和参数依赖性二次稳定性。稳健的稳定性和性能条件被转换为受双线性矩阵不等式的优化问题,这可以求解或进一步线性化。主要结果是,建议的稳定性和性能条件而没有对控制器结构的任何限制是调度和不确定性参数的凸起功能。因此,不需要施加多凸起或其他松弛技术,因此提出的解决方案提供了更少保守的设计方法。通过数值示例对新颖的设计技术的可行性进行说明和评估。

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