时空动态系统的输出反馈后退水平控制

T. Hashimoto, Y. Takiguchi, T. Ohtsuka
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引用次数: 12

摘要

本文研究了一类广义时空动态系统的后退地平线控制问题。后退地平线控制器通常假设所有状态变量都是已知的。然而,系统的状态变量通常是通过输出来测量的,因此只有有限的部分可以直接使用。此外,输出信号可能受到过程和传感器噪声的干扰。本文针对一类广义的时空动态系统,提出了一种输出反馈后退水平控制的设计方法。我们分别应用收缩映射法和无气味卡尔曼滤波来解决优化和估计问题。数值仿真验证了该方法的有效性。
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Output Feedback receding horizon control for spatiotemporal dynamic systems
Receding horizon control problem is investigated here for a generalized class of spatiotemporal dynamic systems. Receding horizon controllers often assume that all state variables are exactly known. However, it is usual that the state variables of systems are measured through outputs, hence, only limited parts of them can be used directly. Moreover, the output signals may be disturbed by process and sensor noises. In this study, we develop a design method of output feedback receding horizon control for a generalized class of spatiotemporal dynamic systems. We apply the contraction mapping method and unscented Kalman filter for solving the optimization and estimation problems, respectively. The effectiveness of the proposed method is verified by numerical simulations.
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