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Design of Prescribed-Precision Controllers of Multivariable Systems by Root-Mean-Square Criterion on the Basis of LQ-optimization Procedures

机译:基于LQ优化过程的均方根准则设计多变量系统的精密控制器

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摘要

A problem of designing the continuous controllers of multivariable linear systems ensuring in the root-mean-square their desired precision in the controlled variables under the action of nonmeasurable, power-bounded polyharmonic determinate exogenous disturbances having unknown amplitudes, frequencies, and number of frequencies was formulated. Conditions were established for solvability of the problem with state controllers (in this case, the disturbances and controls must be applied to the same point) and measurable output controllers (the plant must be minimum phase with the same number of controls and controlled variables) on the basis of the LQ-optimization procedures by selecting the weight coefficients of the quadratic optimization functional.
机译:设计多变量线性系统的连续控制器的问题是在均方根中确保在具有未知幅度,频率和频率数量的不可测量的,有功率限制的多谐波确定外源性干扰的作用下,控制变量具有所需的均方根精度。制定。建立了状态控制器可解决问题的条件(在这种情况下,必须将干扰和控制应用于同一点),并且可测量的输出控制器(工厂必须是具有相同数量的控制和受控变量的最小相位)。通过选择二次优化函数的权重系数,可以确定LQ优化程序的基础。

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