全带宽准谐波干扰下基于一步离散傅立叶变换的正弦频率估计

IF 1.3 Q3 ACOUSTICS
João Miguel Silva, Marco António Oliveira, André Ferraz Saraiva, Aníbal J. S. Ferreira
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引用次数: 0

摘要

40多年来,正弦信号的频率估计一直是人们激烈研究的对象。它在电信、仪器和医学等经典领域的重要性已经扩展到许多特定的信号处理应用,例如语音、音频和音乐处理。在许多情况下,这些应用程序是实时运行的,因此需要精确、快速和低复杂度的算法。本文以归一化cram - rao下界为参考,在目标正弦信号受到全带宽准谐波干扰和平稳噪声影响时,评价了基于离散傅立叶变换的9种非迭代独立正弦频率估计器的相对性能。拟谐波干扰的严重程度分为三个级别:无谐波干扰、轻微谐波干扰和强谐波干扰。此外,谐波干扰是调幅和调频的,反映了现实世界的条件,例如,在歌唱和音乐和弦中。结果表明,当信噪比在- 10 dB和70 dB之间变化时,不同频率估计器的相对性能取决于信噪比和所使用窗口的选择性和泄漏,但也随着准谐波干扰严重程度的变化而急剧变化。特别是,当这种干扰很强时,大多数测试频率估计器的性能曲线在DFT bin宽度的0.4%左右或以上崩溃为几个趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
One-Step Discrete Fourier Transform-Based Sinusoid Frequency Estimation under Full-Bandwidth Quasi-Harmonic Interference
The estimation of the frequency of sinusoids has been the object of intense research for more than 40 years. Its importance in classical fields such as telecommunications, instrumentation, and medicine has been extended to numerous specific signal processing applications involving, for example, speech, audio, and music processing. In many cases, these applications run in real-time and, thus, require accurate, fast, and low-complexity algorithms. Taking the normalized Cramér–Rao lower bound as a reference, this paper evaluates the relative performance of nine non-iterative discrete Fourier transform-based individual sinusoid frequency estimators when the target sinusoid is affected by full-bandwidth quasi-harmonic interference, in addition to stationary noise. Three levels of the quasi-harmonic interference severity are considered: no harmonic interference, mild harmonic interference, and strong harmonic interference. Moreover, the harmonic interference is amplitude-modulated and frequency-modulated reflecting real-world conditions, e.g., in singing and musical chords. Results are presented for when the Signal-to-Noise Ratio varies between −10 dB and 70 dB, and they reveal that the relative performance of different frequency estimators depends on the SNR and on the selectivity and leakage of the window that is used, but also changes drastically as a function of the severity of the quasi-harmonic interference. In particular, when this interference is strong, the performance curves of the majority of the tested frequency estimators collapse to a few trends around and above 0.4% of the DFT bin width.
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来源期刊
CiteScore
3.70
自引率
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审稿时长
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