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Fractional hold circuits versus positive realness of discrete transfer functions

机译:分数保持电路与离散传递函数的正实性

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The appropriate use of fractional-order holds(beta-FROH) of correcting gains beta is an element of[- 1,1] as an alternative to the classical zero- and first-order holds(ZOHs, FOHs) is discussed related to the positive realness of the associate discrete transfer functions obtained from a given continuous transfer function. It is proved that the minimum direct input/output gain (i.e., the quotient of the leading coefficients of the numerator and denominator of the transfer function) needed for discrete positive realness may be reduced by the choice of beta compared to that required for discretization via ZOH.
机译:校正增益β的分数阶保持(β-FROH)的适当使用是[-1,1]的元素,作为与经典零阶和一阶保持(ZOHs,FOHs)的替代,与从给定的连续传递函数获得的相关离散传递函数的正实性。事实证明,与通过离散化所需的最小贝塔值相比,通过选择β可以降低离散正实性所需的最小直接输入/输出增益(即,传递函数的分子的前导系数与传递函数的分母的商)。 ZOH。

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