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Design of Multi-Dimensional Recursive Systems through Pad'e Type Rational Approximation

机译:基于Pad'e型有理逼近的多维递归系统设计

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The results obtained in classical 1-D rational approximation are extended in this paper to rational approximation of M-D functions. A full analog of classical Montessus de Ballore theorem for the convergence of the rows of Pad′e’s tables is obtained. It is shown that the appropriate theorem for uniform convergence in C 2 will really take place only in the case of choosing the necessary determinative (interpolation) sets Ij (n, m), j = 1, 2. This theorem allows us to handle the problem of deriving the transfer function of a M-D digital system, that is described 105 by its state-space representation1 . The results of computer modelling by using MATLAB software are presented. Both the convergence theorem and results of modelling show that from theoretical and practical points of view the proposed approach is promising.
机译:在经典一维有理逼近中获得的结果在本文中扩展到了M-D函数的有理逼近。获得了Pads表格行收敛的经典Montessus de Ballore定理的完全相似形式。结果表明,只有在选择必要的确定性(插值)集Ij(n,m),j = 1,2的情况下,才会真正实现C 2中均匀收敛的适当定理。该定理使我们能够处理推导MD数字系统传递函数的问题,用状态空间表示1描述105。给出了使用MATLAB软件进行计算机建模的结果。收敛定理和建模结果都表明,从理论和实践的角度来看,该方法是有希望的。

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