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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Optimization of the Quantized Coefficients for DDFS Utilizing Polynomial Interpolation Methods
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Optimization of the Quantized Coefficients for DDFS Utilizing Polynomial Interpolation Methods

机译:利用多项式插值法优化DDFS的量化系数

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摘要

In this brief, a novel method to find the optimized quantized coefficients for direct digital frequency synthesizers (DDFSs) based on polynomial interpolation methods is introduced. First, a new method is introduced to find the spurious-free dynamic-range upperbound for DDFSs with a polynomial interpolation method, utilizing the discrete Fourier transform and the Chebyshev minimax problem. This method can be modified to obtain quantized coefficients by employing mixed-integer linear programming. In this problem, the polynomial coefficients are presented in a positive sum of powers of two (SPT) and unsigned integer forms. The proposed method is used to design the linear interpolation-based DDFSs with nonuniform segmentations. The VLSI realizations of the designs with nonuniform segmentations are provided, where it is shown that they have a smaller silicon area and higher clock frequencies compared with the state-of-the-art designs reported in literature.
机译:在此简介中,介绍了一种基于多项式插值方法为直接数字频率合成器(DDFS)找到最佳量化系数的新方法。首先,引入了一种新方法,利用离散傅里叶变换和切比雪夫极小值问题,通过多项式插值方法为DDFS查找无杂散的动态范围上限。通过采用混合整数线性规划,可以修改此方法以获得量化系数。在此问题中,多项式系数以两个(SPT)和无符号整数形式的幂的正和表示。该方法用于设计分段不均匀的基于线性插值的DDFS。提供了具有不均匀分段的设计的VLSI实现,其中表明,与文献中报道的最新设计相比,它们具有更小的硅面积和更高的时钟频率。

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