Ring-Space Array Torque Measure System and Signal Singularity Detection

Author:

Wang Yuan Gan1

Affiliation:

1. Qinzhou University

Abstract

Torque is the most important dynamic characteristics of the mechanically-driven system. In order to monitor the mechanical principal axis in real time, a new non-contact torque measurement system based on ring-space array sensor is proposed. This system can be used for the analysis of dynamic characteristics of the mechanical system’s axis under various loads and hard working environments. Singularity in the collected signals is most important with the mechanical system. Because of much noise was contained in collected signals, which always interferes the signal’s singularity detection. According to the different behaves of signal and noise under wavelet transform, a method with wavelet filtering and singularity detection combined is proposed. This method could realize two-dimension filtering reconstruction in both time and frequency domain, in which the singularity information in signal can be kept well while the noise will be filtered. The proposed method is suitable for singularity detection of signals under serious noise.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference7 articles.

1. Kakinoki Tetsuro, Yokoyama Ryuichi, Fujita Goro. Shaft torque observer and excitation control for turbine–generator torsional oscillation. Electric Power Systems Research, 2004(68)3: 248~257.

2. WANG Yuan-gan, YU Hong-lin, HE An-guo1, BA Jun1, CHEN Zhuo. Design and principle analysis of the ring-space array torque sensor. Transducer and Micro-system Technologies, 2011, 30(6): 49-52.

3. Nakonieczny K. Entropy generation in a diesel engine turbocharging system. Energy, 2002, 27(11): 1027~1056.

4. WANG Yuan-gan, YU Hong-lin, BA Jun. Research on torque sensor measurement system used ring-space array. Transducer and Micro-system Technologies, 2010, 29(9): 33-36.

5. Chen Y G, Tian Z P, Miao, Zh Q. Detection of singularities in the pressure fluctuations of circulating fluidized beds based on wavelet modulus maximum method. Chemical Engineering Science, 2004, 59(17): 3569~3575.

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