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Explicit H controllers for 1 st to 3 rd order single-input single-output systems with parameters

机译:显式H 控制器,用于1个 st 到3个 rd 带参数的单输入单输出系统

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The purpose of this paper is to explicitly characterize H ∞ controllers for single-input single-output (SISO) systems of order 1, 2 and 3 in terms of their coefficients considered as unknown parameters. In the SISO case, computing H ∞ controllers requires to find the real positive definite solution of an algebraic Riccati equation. Due to the system parameters, no purely numerical method can be used to find such a solution, and thus parametric H ∞ controllers. Using elimination techniques of zero-dimensional polynomial systems, we first give a parametrization of all the solutions of the algebraic Riccati equation associated with the H ∞ control problem. Since the problem reduces to solving an univariate polynomial of degree less than or equal to 4, closed-form solutions are then obtained for the solutions of the algebraic Riccati equation by means of radicals. Using the concept of discriminant variety, we show that the maximal real root of this polynomial is always defined by the same closed-form expression, which yields the positive definite solution of the algebraic Riccati equation. Finally, we use the above results to explicitly compute the H ∞ criteria γ pt and H ∞ controllers in terms of the system parameters and study them with respect to parameter variations.
机译:本文的目的是根据被视为未知参数的系数来明确表征1阶,2阶和3阶单输入单输出(SISO)系统的H∞控制器。在SISO情况下,计算H∞控制器需要找到代数Riccati方程的实数正定解。由于系统参数的原因,不能使用纯数值方法来找到这种解决方案,因此无法使用参数H∞控制器。使用零维多项式系统的消除技术,我们首先给出与H∞控制问题有关的代数Riccati方程所有解的参数化。由于该问题简化为求解阶数小于或等于4的单变量多项式,因此通过根对代数Riccati方程的解获得了封闭形式的解。使用判别变式的概念,我们表明此多项式的最大实根始终由相同的闭式表达式定义,这产生了代数Riccati方程的正定解。最后,我们使用上述结果明确地根据系统参数计算H∞准则γpt和H∞控制器,并针对参数变化研究它们。

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