Design of a quasi-logarithmically spaced multi-sine signal generator based on FPGA

Yuxiang Yang, Fu Zhang, Feilong Zhu
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Abstract

Low crest factor (CF) multi-sine can bring high signal-to-noise ratio for fast frequency response function (FRF) measurement. This paper synthesizes a broadband multi-sine signal which has 15 flat and quasi-logarithmically spaced spectrum and a low CF of 1.8484. The multi-sine is realized based on a field-programmable gate array (FPGA). The generated multi-sine has the fundamental frequency of 8 kHz, and spans logarithmically from 8 kHz to 800 kHz at its 15 harmonic components. This paper provides an applicable solution to synthesize and generate broadband multi-sine signals.
基于FPGA的准对数间隔多正弦信号发生器设计
低波峰系数(CF)多重正弦可以为快速测量频响函数(FRF)带来高信噪比。本文合成了一个宽带多正弦信号,该信号具有15个平坦的准对数间隔频谱和1.8484的低CF。多正弦信号是基于现场可编程门阵列(FPGA)实现的。所产生的多重正弦具有8 kHz的基频,并在其15个谐波分量上以对数形式从8 kHz到800 kHz。本文提供了一种适用于宽带多正弦信号合成和生成的解决方案。
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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