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基于频率特征的单传感器涡街流量计抗强干扰信号处理方法及系统

Frequency-feature based antistrong-disturbance signal processing method and system for vortex flowmeter with single sensor.

作者信息

Xu Ke-Jun, Luo Qing-Lin, Wang Gang, Liu San-Shan, Kang Yi-Bo

机构信息

School of Electrical and Automation Engineering, Hefei University of Technology, Hefei 230009, People's Republic of China.

出版信息

Rev Sci Instrum. 2010 Jul;81(7):075104. doi: 10.1063/1.3455204.

Abstract

Digital signal processing methods have been applied to vortex flowmeter for extracting the useful information from noisy output of the vortex flow sensor. But these approaches are unavailable when the power of the mechanical vibration noise is larger than that of the vortex flow signal. In order to solve this problem, an antistrong-disturbance signal processing method is proposed based on frequency features of the vortex flow signal and mechanical vibration noise for the vortex flowmeter with single sensor. The frequency bandwidth of the vortex flow signal is different from that of the mechanical vibration noise. The autocorrelation function can represent bandwidth features of the signal and noise. The output of the vortex flow sensor is processed by the spectrum analysis, filtered by bandpass filters, and calculated by autocorrelation function at the fixed delaying time and at tau=0 to obtain ratios. The frequency corresponding to the minimal ratio is regarded as the vortex flow frequency. With an ultralow-power microcontroller, a digital signal processing system is developed to implement the antistrong-disturbance algorithm, and at the same time to ensure low-power and two-wire mode for meeting the requirement of process instrumentation. The water flow-rate calibration and vibration test experiments are conducted, and the experimental results show that both the algorithm and system are effective.

摘要

数字信号处理方法已应用于涡街流量计,用于从涡街流量传感器的噪声输出中提取有用信息。但当机械振动噪声的功率大于涡街流量信号的功率时,这些方法就不可用了。为了解决这个问题,针对单传感器涡街流量计,基于涡街流量信号和机械振动噪声的频率特征,提出了一种抗强干扰信号处理方法。涡街流量信号的频率带宽与机械振动噪声的频率带宽不同。自相关函数可以表示信号和噪声的带宽特征。对涡街流量传感器的输出进行频谱分析处理,通过带通滤波器滤波,并在固定延迟时间和τ = 0时通过自相关函数进行计算以获得比值。将对应最小比值的频率视为涡街流量频率。利用超低功耗微控制器,开发了一种数字信号处理系统来实现抗强干扰算法,同时确保低功耗和二线制模式,以满足过程仪表的要求。进行了水流量校准和振动测试实验,实验结果表明该算法和系统都是有效的。

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