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GMV control of non-linear continuous-time systems including common delays and state-space models

机译:非线性连续时间系统的GMV控制,包括公共时延和状态空间模型

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摘要

A non-linear generalized minimum variance control law is proposed for the control of non-linear continuous-time multivariable systems with common delays on input and output channels. The quadratic cost index involves both error and control signal costing terms. The solution for the control law is obtained using a non-linear operator representation of the plant and a linear state-equation model for the disturbance and reference models. The reference and disturbance models are represented by linear subsystems. However, the plant model can be in a very general non-linear operator form, which could involve state-space, transfer operators or non-linear function look up tables. The structure of the system and criterion is chosen so that a simple controller structure and solution is obtained. The controller obtained is simple to implement, particularly in one form, which might be considered to be a state-space version of a non-linear Smith predictor. The results are related to those for discrete-time systems but the presence of the transport delay terms complicates the solution rather more in the continuous-time case.
机译:提出了一种非线性广义最小方差控制律,用于控制输入和输出通道具有共同延迟的非线性连续时间多变量系统。二次成本指数涉及误差和控制信号成本方面。使用工厂的非线性算子表示以及干扰模型和参考模型的线性状态方程模型,可以获得控制律的解。参考模型和扰动模型由线性子系统表示。但是,工厂模型可以采用非常通用的非线性运算符形式,其中可能涉及状态空间,传递运算符或非线性函数查找表。选择系统的结构和准则,以便获得简单的控制器结构和解决方案。所获得的控制器易于实现,特别是以一种形式实现,可以将其视为非线性Smith预测器的状态空间版本。结果与离散时间系统的结果有关,但是在连续时间情况下,传输延迟项的存在使解决方案更加复杂。

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