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Theoretical Upperbound of the Spurious-Free Dynamic Range in Direct Digital Frequency Synthesizers Realized by Polynomial Interpolation Methods

机译:通过多项式插值方法实现的直接数字频率合成器中无杂散动态范围的理论上限

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摘要

In this paper, a universal mathematical method is proposed to determine the upperbound of the spurious-free dynamic range (SFDR) in direct digital frequency synthesizers (DDFSs) realized by piecewise polynomial interpolation methods. The Fourier series is used to establish a linear matrix relationship between the frequency spectrum of the interpolated sinusoidal signal and the coefficients of the interpolating polynomials. This matrix relationship can be considered as a linear overdetermined system of equations, which can be solved for the ideal spectrum where the fundamental harmonic has an amplitude of one and the other harmonics are zero. It is shown that the Moore-Penrose pseudoinverse and Chebyshev minimax methods find the coefficients corresponding to the largest signal-to-noise ratio and maximum SFDR designs, respectively. The proposed method is used to show that the maximum SFDR of a DDFS based on the even fourth-order polynomial interpolation is 74.35 dBc. A DDFS based on the aforementioned method is designed and its architecture is optimized to obtain an SFDR of 72.2 dBc. A VLSI implementation of the proposed DDFS is also reported.
机译:本文提出了一种通用的数学方法来确定通过分段多项式插值方法实现的直接数字频率合成器(DDFS)中无杂散动态范围(SFDR)的上限。傅里叶级数用于在插值正弦信号的频谱和插值多项式的系数之间建立线性矩阵关系。该矩阵关系可以视为方程的线性超定系统,可以针对理想频谱进行求解,该理想频谱中基波谐波的振幅为一个,而其他谐波的振幅为零。结果表明,Moore-Penrose伪逆法和Chebyshev minimax方法分别找到对应于最大信噪比和最大SFDR设计的系数。所提出的方法用于显示基于偶数四次多项式插值的DDFS的最大SFDR为74.35 dBc。设计了基于上述方法的DDFS,并对其架构进行了优化,以获得SFDR为72.2 dBc。还报告了提议的DDFS的VLSI实现。

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