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Echo energy integral based signal processing method for ultrasonic gas flow meter

机译:超声波气流计的回波能量积分基于信号处理方法

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摘要

Ultrasonic gas flow meter possesses unique measurement advantages, and is especially suitable for natural gas measurement of large diameter gas pipelines. It is very important to obtain the accurate transit-time of ultrasonic signal for ensuring the measurement accuracy of ultrasonic gas flow meter. However, it is difficult to find stable feature points for determining the transit-time in ultrasonic gas flow meter signal processing. Aiming at this problem, the echo energy gradient is analyzed from the point of the echo energy integral in this paper, an echo energy integral based signal processing method is proposed, and corresponding parameter selection is put forward. First of all, the FCE (fixed cumulative energy) value is set as a standard, and the area of the EES (echo energy signal) rising section is integrated, that is, the echo energy in this period of time is accumulated. When the cumulative energy value exceeds the FCE value, the end position of the FCE value is taken as the feature point. Then the ultrasonic transit time is obtained, and the gas flow rate is calculated. This digital signal processing method is implemented in real-time in the digital system with the FPGA (Field Programmable Gate Array) and the DSP (Digital Signal Processor) as the double cores, and the gas flow calibration experiments are conducted to verify the effectiveness of the proposed digital signal processing method. (C) 2018 Elsevier B.V. All rights reserved.
机译:超声波气体流量计具有独特的测量优势,特别适用于大直径气体管道的天然气测量。获得超声信号的精确传输时间是非常重要的,以确保超声波气流计的测量精度。然而,难以找到用于确定超声波气流计信号处理中的传输时间的稳定特征点。针对这个问题,从本文的回声能量积分的点分析回声能量梯度,提出了一种回波能量积分基于基于信号处理方法,并提出了相应的参数选择。首先,FCE(固定累积能量)值被设定为标准,并且集成了EES(回波能量信号)上升部分的区域,即累积了这段时间内的回波能量。当累积能量值超过FCE值时,FCE值的结束位置被视为特征点。然后获得超声传输时间,并计算气体流速。该数字信号处理方法在数字系统中实时实现,其中FPGA(现场可编程门阵列)和DSP(数字信号处理器)作为双核,并进行气流校准实验以验证有效性所提出的数字信号处理方法。 (c)2018年elestvier b.v.保留所有权利。

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