时差法超声流量计瞬时流速动态跟踪算法
PDF下载 (386)朱 莹,王让定,杜呈透.时差法超声流量计瞬时流速动态跟踪算法[J].宁波大学学报(理工版),2013,27(01):29-32.DOI:
ZHU Ying,WANG Rang-ding,DU Cheng-tou.A Dynamic Tracking Method for Instantaneous Velocity of the Time Difference Ultrasonic Flowmeter[J].Journal of Ningbo University(Natural Science & Engineering Edition),2013,27(01):29-32.DOI:
| Title: | A Dynamic Tracking Method for Instantaneous Velocity of the Time Difference Ultrasonic Flowmeter |
| 作者: | 朱 莹, 王让定, 杜呈透 |
| Author(s): | ZHU Ying, WANG Rang-ding, DU Cheng-tou |
| 关键词: | 时差法; 超声流量计; 计量精度; 动态跟踪; 瞬时流速 |
| Keywords: | time difference method; ultrasonic flow-meter; measurement precision; instantaneous velocity; dynamic tracking |
| 分类号: | TH814 |
| 文献标识码: | A |
| 摘要: | 时差法超声流量计由于受到功耗的限制, 在时间差的测量中不能采用很高的采样频率. 但在实际流量测量中存在着流体流速会突变的现象, 这样在低流速分辨率情况下就会引起流速测量不能实时跟踪而造成较大计量误差, 也就影响了其相应的计量精度和系统稳定性. 因此对时差法超声流量计瞬时流速动态的跟踪问题进行探讨, 设计出瞬时流速动态跟踪算法. 经过实验验证, 所设计的动态跟踪算法可以使超声流量计的计量精度提高0.4%左右, 重复性提高0.05%左右, 而系统功耗几乎没有大的变化. |
| Abstract: | Due to the limitations of power consumption, the time difference measurement of transit-time ultrasonic flow meter can not be used at a high sampling frequency. But sometimes the fluid flow rate varies suddenly when being measured, causing the velocity measurement not to be real-time tracking in the case of low velocity resolution, thus greatly affecting the measurement accuracy and system stability of the ultrasonic flow meter. In this paper, the velocity tracking problem of the transit-time ultrasonic flow meter is investigated, and the instantaneous velocity dynamic tracking algorithm is developed. The experiments show that the dynamic tracking algorithm can raise the precision of the time difference ultrasonic flow meter by about 0.4%, and the repeatability by about 0.05%, with the system power consumption being virtually unchanged |
| 参考文献 /References: | [1].nd implementation of low-power time difference ultrasonic flow-meter[C]. The 3rd International Asia Conference on Informatics in Control, Automation and Robotics, 2011: 469-475. [2].刘存, 黄建军. 时差法超声流量计的几点改进[J]. 沈阳工业大学学报, 2002, 24(2):113-115. [3].张涛, 蒲诚, 赵宇洋. 传播时间法超声流量计信号处理技术进展述评[J]. 化工自动化及仪表, 2009, 36(4):1-7. [4].Yin Junfei, Lloyd P M, Falconer R A. Tidal flow local mean velocities in noisy signals[J]. Flow Measurement and Instrumentation, 2001, 12(2):25-28. [5].Willatzen M, Kamath H. Nonlinearities in ultrasonic flow measurement[J]. Flow Measurement and Instrumentation, 2008, 19:79-84. [6].蔡武昌, 孙淮清, 纪纲. 流量测量方法和仪表的选用[M]. 北京: 化学工业出版社, 2004. [7].杨亚, 王让定, 姚灵, 等. 时差法超声波流量计中时间间隔测量及误差分析[J]. 宁波大学学报: 理工版, 2012, 25(4):35-39. [8].Luntta E, Halttunen J. Neural network approach to ultrasonic flow measurements[J]. Flow Measurement and Instrumentation, 1999, 10(2):35-43. [9].Bockhoven C J, Henkes A W M. Effect of wall roughness changes on ultrasonic gasflowmeters[J]. Flow Measure- ment and Instrumentation, 2001, 12:219-229. |
| 备注/Memo: | 收稿日期: 2013?07?20. 宁波大学学报(理工版)网址: http://journallg.nbu.edu.cn/基金项目: 浙江省优先主题重点工业项目(2010C11025); 浙江省教育厅重大科技攻关项目(ZD2009012); 宁波市重大科技攻关项目(2009B10003).第一作者: 朱 莹(1978-), 女, 吉林长春人, 硕士/讲师, 主要研究方向: 信号与信息处理. E-mail: zhuying@nbu.edu.cn 宁波大学学报(理工版)网址:http://journallg.nbu.edu.cn/ |