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A novel multipitch measurement algorithm for acoustic signals of moving targets

机译:一种新颖的运动目标声信号多音高测量算法

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摘要

In this paper, a novel multipitch measurement (MPM) method is proposed for acoustic signals. Starting from the analysis of moving targets' acoustic signatures, a pitch-based harmonics representation model of acoustic signal is put forward. According to the proposed harmonics model, a modified greatest common divisor (MGCD) method is developed to obtain an initial multipitch set (IMS). Subsequently, the harmonic number vector (HNV) associated with the IMS is determined by maximizing the objective function formulated as a multi-impulse-train weighted symmetric average magnitude sum function (SAMSF) of the observed signal. The frequencies of SAMSF are determined by the target acoustic signal, the periods of the multi-impuise-train are governed by the estimated IMS harmonics and the maximization of the objective function is figured out through a time-domain matching of periodicities of the multi-impulse-train with that of the SAMSF. Finally, by using the obtained IMS and its HNV, a precise fundamental frequency set is achieved. Evaluation of the algorithm performances in comparison with state-of-the-art methods indicates that MPM is practical for the multipitch extraction of moving targets.
机译:在本文中,提出了一种新颖的对声音信号的多音高测量(MPM)方法。从分析运动目标的声学特征出发,提出了基于音高的声信号谐波表示模型。根据提出的谐波模型,开发了一种改进的最大公因数(MGCD)方法以获得初始多音高集(IMS)。随后,通过最大化目标函数来确定与IMS相关的谐波数向量(HNV),该目标函数被公式化为观测信号的多脉冲加权平均对称平均幅度和函数(SAMSF)。 SAMSF的频率由目标声波信号确定,多重冲击波的周期由估计的IMS谐波控制,目标函数的最大化通过多重磁场周期的时域匹配来求出与SAMSF的冲量训练。最后,通过使用获得的IMS及其HNV,可以获得精确的基本频率集。与最先进的方法相比,对算法性能的评估表明,MPM可用于移动目标的多音高提取。

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