Time Delay Signal Process Assisted by Virtual Instrument

Ming Li, C. Jiang, Zi Yuan, Zaicheng Wang
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Abstract

Time delay estimation is the basis of target orientation of multi-sensor network,while the preliminary analysis and processing of the time delay signal is very important to the time delay estimation.In this paper,a virtual instrument time delay analysis system is designed,which contains: a virtual oscilloscope,a virtual spectrum analyzer,a virtual filter and a virtual time delay analyzer.By the use of this analysis system,the spectrum of the acoustic target signal collected in the field is analyzed. Analysis shows the main frequency of the target signal:85Hz,20Hz,170Hz,125Hz.Significance of the time delay peak is proposed to describe the validation of the cross-correlation result.Based on the three main frequency components,signals were filtered by the three filters and analyzed separately.The time delay estimation has been carried out for several sampling data segments selected by certain rules. Results were shown in figures of time delay vs.time and significant ratio vs.time.Each curve in a figure corresponds to a certain number of points of cross correlation. According to the results, the frequency component from 155Hz to 180Hz is much more suitable for practical use. The regular pattern of the time delay curve is consistent with the target motion.Application reveals that the system is helpful in the research of time delay estimation.
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虚拟仪器辅助时滞信号处理
时延估计是多传感器网络目标定位的基础,而时延信号的初步分析和处理对时延估计至关重要。本文设计了一个虚拟仪器时延分析系统,该系统由虚拟示波器、虚拟频谱分析仪、虚拟滤波器和虚拟时延分析仪组成。利用该分析系统,对现场采集的声目标信号进行了频谱分析。分析表明目标信号的主频率为:85Hz、20Hz、170Hz、125Hz。提出了时延峰值的意义来描述互相关结果的验证。基于三个主要的频率分量,分别对信号进行滤波和分析。对按一定规则选择的若干采样数据段进行了时延估计。结果显示在时间延迟与时间的关系图和显著比与时间的关系图中,图中的每条曲线对应一定数量的相互关系点。结果表明,155Hz ~ 180Hz的频率分量更适合实际使用。延时曲线的规律与目标运动一致。应用表明,该系统有助于时延估计的研究。
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