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Optimal controllers and adaptive controllers for multichannel feedforward control of stochastic disturbances

机译:随机干扰的多通道前馈控制的最优控制器和自适应控制器

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摘要

A time domain formulation for the multichannel feedforward control problem is used to derive an optimally condition for the least squares controller. It is also used to motivate an instantaneous steepest descent algorithm for the adaptation of the controller, which is known as the filtered error LMS algorithm. The convergence rate of this algorithm is limited by the correlation properties of each reference signal, their cross-correlation properties and the dynamics and coupling within the plant response. An expression is then derived for the transfer function of the optimum least squares controller. This suggests a new architecture for the adaptive controller whose convergence rate is not limited by the factors mentioned above. A set of white and uncorrelated reference signals are generated to drive a modified matrix of control filters, whose outputs are multiplied by the inverse of the minimum phase part of the plant response matrix before being fed to the physical plant. The error signals from the plant are then used to update this controller after being fed through the time-reverse transpose of the all-pass part of the plant matrix. The relationship is also discussed between this architecture and that using a singular value decomposition of the plant response, which is used to control tonal disturbances.
机译:针对多通道前馈控制问题的时域公式用于得出最小二乘控制器的最佳条件。它也用于激励瞬时最速下降算法以适应控制器,该算法称为滤波误差LMS算法。该算法的收敛速度受到每个参考信号的相关特性,它们的互相关特性以及工厂响应内的动力学和耦合的限制。然后为最佳最小二乘控制器的传递函数导出一个表达式。这为自适应控制器提出了一种新的架构,其收敛速度不受上述因素的限制。产生一组白色且不相关的参考信号,以驱动控制滤波器的修改矩阵,将其输出乘以工厂响应矩阵的最小相位部分的倒数,然后再馈送到物理工厂。来自工厂的错误信号在通过工厂矩阵的全通部分的时间反向转置后,将用于更新此控制器。还讨论了此体系结构与使用植物响应的奇异值分解(用于控制音调干扰)之间的关系。

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