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A ROM-Less Direct Digital Frequency Synthesizer Based on Hybrid Polynomial Approximation

机译:基于混合多项式近似的ROM较少的直接数字频率合成器

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摘要

In this paper, a novel design approach for a phase to sinusoid amplitude converter (PSAC) has been investigated. Two segments have been used to approximate the first sine quadrant. A first linear segment is used to fit the region near the zero point, while a second fourth-order parabolic segment is used to approximate the rest of the sine curve. The phase sample, where the polynomial changed, was chosen in such a way as to achieve the maximum spurious free dynamic range (SFDR). The invented direct digital frequency synthesizer (DDFS) has been encoded in VHDL and post simulation was carried out. The synthesized architecture exhibits a promising result of 90 dBc SFDR. The targeted structure is expected to show advantages for perceptible reduction of hardware resources and power consumption as well as high clock speeds.
机译:本文研究了对正弦波幅度转换器(PSAC)的新颖设计方法。已经使用两个段来近似第一正弦象限。第一线性段用于将区域置于零点附近,而第二四阶抛物线段用于近似于正弦曲线的其余部分。选择多项式改变的相位样品以实现最大杂散的自由动态范围(SFDR)的方式选择。本发明的直接数字频率合成器(DDFS)已在VHDL中编码,并进行后模拟。合成的架构表现出90 DBC SFDR的有希望的结果。预计目标结构将显示硬件资源和功耗降低以及高时钟速度的优点。

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