Low Spurious Waveform Synthesis Based on Digital Resampling

Wenhao Zhao, Shulin Tian, Ke Liu, Lei Huang, Guangkun Guo, Qiong Wu
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Abstract

Arbitrary waveform generator (AWG) plays an important part in electronic measurement area. As technology continues to evolve, the need to synthesize signals with higher bandwidth and lower spurious came up. However, certain limitations exist in current digital waveform synthesis methods, which leads to high spurious in the output waveform. Direct Digital Waveform Synthesis (DDWS) method's image frequency's position isn't strictly fixed and hard to restrain due to the change of the sampling clock frequency; Direct Digital Frequency Synthesis (DDFS) method needs the phase accumulator's bits be large enough to obtain a high frequency resolution of the output waveform, which brings in the phase truncation error and adds spurious component. Therefore, in this paper we analyzed the advantages of the two methods and proposed a waveform synthesis method based on digital resampling, waveform samples are determined in variable clock domain, then use resampling filter based on Farrow structure to realize the transform from variable sample rate to fixed sample rate, achieving waveform synthesis method with low spurious. As the simulation results indicate, our new method has huge advantage over DDWS and DDFS.
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基于数字重采样的低杂散波形合成
任意波形发生器(AWG)在电子测量领域占有重要地位。随着技术的不断发展,需要合成具有更高带宽和更低杂散的信号。然而,目前的数字波形合成方法存在一定的局限性,导致输出波形具有很高的杂散度。直接数字波形合成(DDWS)方法的图像频率位置不严格固定,由于采样时钟频率的变化难以抑制;直接数字频率合成(DDFS)方法需要相位累加器的位元足够大,以获得高频率分辨率的输出波形,这带来了相位截断误差,增加了杂散分量。因此,本文分析了两种方法的优点,提出了一种基于数字重采样的波形合成方法,在变时钟域确定波形样本,然后利用基于Farrow结构的重采样滤波器实现从变采样率到固定采样率的转换,实现低杂散的波形合成方法。仿真结果表明,与DDWS和DDFS相比,该方法具有很大的优势。
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