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Recursive Numerically-Controlled Polynomial Phase Signal Oscillator

机译:递归数控多项式相位信号振荡器

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This article is devoted to the development of a sample generator for polynomial phase signals. Known developments are limited to polynomial phase signals of the first (harmonic signals) and the second (linear frequency modulated signals). To construct them, tabular methods are used, which limit the possibilities of signal restructuring. This work is based on the use of a recursive approach, which minimizes the need for memory as much as possible and, thereby, increases the speed of parameter tuning. The authors have previously applied this approach to the generation of samples of chirp signals. Here the method is extended to arbitrary order complex polynomial phase signals. The proposed approach implies for the formation of a polynomial phase signal of the nth order a series connection of n identical units, the input parameters of which are the initial conditions. The units form complex samples of polynomial phase signals, the order of which is equal to the unit number. The input of the first unit is a zero-order polynomial phase signal - a complex constant. The initial conditions for the implementation of the former are the real coefficients of the nth degree polynomial and the signal amplitude. These parameters are used to calculate the initial conditions of the last block and the coefficients of the polynomials that determine the initial conditions of the previous blocks. Implementations of this approach for polynomial phase signals of the first, second and third order are presented. The Simulink model of the third order signal former is presented.
机译:本文致力于开发用于多项式相位信号的样本发生器。已知的发展仅限于第一(谐波信号)和第二(线性频率调制信号)的多项式相位信号。为了构建它们,使用表格方法,这限制了信号重组的可能性。这项工作基于使用递归方法,这使尽可能最大限度地减少对存储器的需求,从而提高参数调谐的速度。作者以前已经将这种方法应用于啁啾信号的样本。这里该方法扩展到任意顺序复数多项式相位信号。所提出的方法意味着形成n的多项式相位信号 th 订购N个相同单位的系列连接,输入参数是初始条件。单位形成多项式相位信号的复杂样本,其顺序等于单位数。第一单元的输入是零阶多项式相位信号 - 复常数。实现前者的初始条件是n的真实系数 th 程度多项式和信号幅度。这些参数用于计算最后一个块的初始条件和确定先前块的初始条件的多项式的系数。呈现了第一,第二和三阶的多项式相位信号的实现方法。提出了三阶信号前的Simulink模型。

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