Home|News|Literature|Journal|Instruction|Forum|Member|Introduction

Chinese  Old version

By    In    Search 

  HomeContents of Chinese Journal of Mechanical Engineering 2008 No.4A Method Based on Heterodyne Stochastic Resonance to
Detect Vortex Shedding Frequency

A Method Based on Heterodyne Stochastic Resonance to
Detect Vortex Shedding Frequency

 

HUANG Yongmei  LIN Min

(College of Metrology Technology and Engineering, China Jiliang University, Hangzhou 310018)

 

Abstract: The detection of vortex shedding frequency is a key technical problem of vortex flowmeter, and also a main subject of present research. The stochastic resonance characteristics of non-linear bistable system under the noise, single frequency and multi frequencies action are analyzed. With the combination of heterodyne power spectrum and stochastic resonance, a method based on heterodyne stochastic resonance to detect vortex shedding frequency is proposed. The theoretical analysis, numerical simulation and experimental results manifest that the SNR of vortex signal can be improved effectively and the vortex shedding frequency can be obtained accurately with the stochastic resonance applied to vortex signal. The method is feasible and effective in the detection of vortex shedding frequency. It is also a new method to improve the adaptability of vortex flowmeter in practical application and measure the low and weak vortex signal frequency accurately.

Key words: Heterodyne  Stochastic resonance  Vortex shedding signal  Frequency measurement

CLC No: TH814 O322

国家自然科学基金资助项目(60674023). Received 20070406, received in revised form 20071225

 
Open or Download Full Text of this Paper (PDF File)
 

References

[1] PENG J G, FU X, CHEN Y. Flow measurement by a new type vortex flowmeter of dual triangulate bluff body[J]. Sensors and Actuators, 2004, 115: 53-59.
[2] PENG Jiegang, FU Xin, CHEN Ying. Experimental study of fluid oscillation for dual bluff body vortex flowmeter[J]. Chinese Journal of Mechanical Engineering, 2002, 38(8): 23-26.
[3] XU Kejun, WANG Anmin, LÜ Xunhong, et al. Adaptive notch filter-based signal processor system of vortex flowmeter[J]. ACTA Metrologica Sinica, 2000, 21(3): 199-204.
[4] HUANG Yunzhi, XU Kejun. A signal processing method based on wavelet filter banks for vortex flowmeter[J]. ACTA Metrologica Sinica, 2006, 27(2): 133-136.
[5] ZHANG Tao, WU Peng. Wavelet based on denoising of vortex flowmeter signal[J]. ACTA Metrologica Sinica, 2003, 24(3): 199-201.
[6]  ZHANG T, SUN H Y, WU P. Wavelet denoising applied to vortex flowmeters[J]. Flow Measurement and Instrumentation, 2004, 15: 325-329.
[7] SONG Lei, CHEN Jie, LI Bin. Research on the chaos performance of noise in vortex flow signal[J]. ACTA Metrologica Sinica, 2005, 26(2): 155-158.
[8] GAO Jinzhan. Weak signal detection[M]. Beijing: Tsinghua University Press, 2004.
[9]  GAMMAITONI  L, PETER H, PETER J, et al. Stochastic resonance[J]. Rev. Mod. Phys., 1998, 70(1): 223-246.
[10] LIN Min, HUANG Yongmei. Incipient fault detection for rotor system based on modulated stochastic resonance[J], Proceeding of the CSEE, 2006, 26(8): 128-131.
[11] HU Niaoqing, CHEN Min, WEN Xisen. Application of stochastic resonance theory for early detection rub-impact fault of rotor system[J]. Chinese Journal of Mechanical Engineering, 2001, 37(9): 68-71.
[12] ZHU Hengjiang, LI Rong, WEN Xiaodong. Extraction information signal under noise by stochastic resonance[J]. ACTA Physica Sinica, 2003, 52(10): 2 404-2 408.
[13] LIN Min, HUANG Yongmei. Modulation and demodulation for detecting weak periodic signal of stochastic resonance[J]. ACTA Physica Sinica, 2006, 55 (7): 3 277-     3 282.
[14]  BENAI R, SUTERA A, VULPIANI A. The mechanism of stochastic resonance[J]. Phys. A, 1981, 14(2): 453-460.
[15] HU Gang. Stochastic forces and nonlinear systems[M]. Shanghai: Shanghai Scientific and Technological Education Publishing Press, 1994.

  About us-Contact us-Site map-Advertisement service-Cooperation-Legal statement  

Address: 22 Baiwanzhuang Dajie, Beijing 100037 China    Tel: 8610-88379907    Fax: 8610-68994557

E-mail: cjme@mail.machineinfo.gov.cn  http: //www.cjmenet.com
©2006 Editorial Office of CJME. All Right Reserved