An Algorithm for Selecting Sampling Rate in Arbitrary Waveform Generator

Yindong Xiao, Guangkun Guo, Yu Chen, Wenhao Zhao, Ke Liu, Lei Huang
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引用次数: 0

Abstract

To solve the problem that auto test equipment (ATE) user cannot set an appropriate output sampling rate due to the missing of arbitrary waveform generator's internal parameters, this paper proposes a sampling rate selecting algorithm based on rational sampling rate conversion (RSRC) theory. Under anti-aliasing conditions, the algorithm selects an output sampling rate, as fractional-times (L/M) as original one, in acceptable range and converts waveform to the output sampling rate by RSRC. In this algorithm, the acceptable sampling rate range can be calculated and be used to get the upper limit of L. Since the value of output waveform length must be less than the memory depth, lower limit of the required memory depth is obtained when a complete waveform can be generated. The experiment result shows that the computational complexity of sampling rate conversion and required memory depth of AWG are both reduced with proposed algorithm comparing with fixed RSRC; the harmonic of output signal is decreased with proposed algorithm comparing with arbitrary sampling rate conversion (ASRC).
任意波形发生器中采样率的选择算法
针对自动测试设备(ATE)用户因任意波形发生器内部参数缺失而无法设定合适的输出采样率的问题,提出了一种基于合理采样率转换(RSRC)理论的采样率选择算法。在抗混叠条件下,算法在可接受的范围内选择与原始采样率相同的小数倍(L/M)输出采样率,并通过RSRC将波形转换为输出采样率。该算法通过计算可接受的采样率范围,得到l的上限。由于输出波形长度的值必须小于存储深度,所以当能够生成完整的波形时,得到所需存储深度的下限。实验结果表明,与固定RSRC相比,该算法降低了采样率转换的计算复杂度和AWG所需的存储深度;与任意采样率转换(ASRC)相比,该算法降低了输出信号的谐波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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