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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A novel DDS using nonlinear ROM addressing with improved compression ratio and quantization noise
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A novel DDS using nonlinear ROM addressing with improved compression ratio and quantization noise

机译:一种使用非线性ROM寻址的新型DDS,具有改进的压缩率和量化噪声

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摘要

This paper presents a novel direct digital frequency synthesis (DDFS) ROM compression technique based on two properties of a sine function: (a) piecewise linear technique to approximate a sinusoid, and (b) variation in the slope of the sinusoid at different phase angles. In the proposed DDFS architecture the ROM stores a few of the sinusoidal values, and the interpolation points between the successive stored values are calculated using linear arid nonlinear addressing schemes. The nonlinear addressing scheme is used to adaptively vary the number of interpolation points as the slope of the sinusoid changes, leading to a greatly reduced ROM size. The proposed architecture achieves a high compression ratio with a spurious response comparable to that of recent ROM compression techniques. To validate the proposed DDS architecture, the linear, nonlinear, and conventional DDS ROM architectures were implemented in a Xilinx Spartan II FPGA and their spurious performances were compared.
机译:本文基于正弦函数的两个特性,提出了一种新颖的直接数字频率合成(DDFS)ROM压缩技术:(a)分段线性技术逼近正弦曲线;(b)在不同相位角下正弦曲线的斜率变化。在提出的DDFS体系结构中,ROM存储一些正弦值,并且使用线性和非线性寻址方案计算连续存储值之间的插值点。非线性寻址方案用于随着正弦曲线的斜率变化而自适应地更改插值点的数量,从而大大减小了ROM的大小。所提出的架构实现了高压缩比,并且具有与最新ROM压缩技术相当的寄生响应。为了验证提出的DDS架构,在Xilinx Spartan II FPGA中实现了线性,非线性和常规DDS ROM架构,并比较了它们的杂散性能。

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