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  1. Chinese Journal of Mechanical Engineering
  2. Chinese Journal of Mechanical Engineering : Volume 26
  3. Chinese Journal of Mechanical Engineering : Volume 26, Issue 5, September 2013
  4. Flexible time domain averaging technique
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Chinese Journal of Mechanical Engineering : Volume 30
Chinese Journal of Mechanical Engineering : Volume 29
Chinese Journal of Mechanical Engineering : Volume 28
Chinese Journal of Mechanical Engineering : Volume 27
Chinese Journal of Mechanical Engineering : Volume 26
Chinese Journal of Mechanical Engineering : Volume 26, Issue 6, November 2013
Chinese Journal of Mechanical Engineering : Volume 26, Issue 5, September 2013
Dynamic modeling and simulation of multi-body systems using the Udwadia-Kalaba theory
Kinematic solution of spherical Stephenson-III six-bar mechanism
Effects of joint on dynamics of space deployable structure
Feedback attitude sliding mode regulation control of spacecraft using arm motion
Kinematics and dynamics analysis of a quadruped walking robot with parallel leg mechanism
Analysis on the performance of the SLIP runner with nonlinear spring leg
Optimal load balancing leveling method for multi-leg flexible platforms
Optimal design of a main driving mechanism for servo punch press based on performance atlases
Emergency local searching approach for job shop scheduling
Metamodel-based global optimization using fuzzy clustering for design space reduction
Development of FPGA based NURBS interpolator and motion controller with multiprocessor technique
Modification design method for an enveloping hourglass worm gear with consideration of machining and misalignment errors
Numerical investigation of the aerodynamic performance affected by spiral inlet and outlet in a positive displacement blower
Numerical simulation and experimental research on passive hydrodynamic bearing in a blood pump
Dynamic stiffness deterioration of a machining center based on relative excitation method
On-machine precision preparation and dressing of ball-headed diamond wheel for the grinding of fused silica
Composite adaptive control of belt polishing force for aero-engine blade
New method to improve dynamic stiffness of electro-hydraulic servo systems
Principle and experimental verification of novel dual driving face rotary ultrasonic motor
Fracture assessment for electron beam welded damage tolerant Ti-6Al-4V alloy by the FITNET procedure
Flexible time domain averaging technique
Improved multi-objective ant colony optimization algorithm and its application in complex reasoning
Feature extraction of kernel regress reconstruction for fault diagnosis based on self-organizing manifold learning
Reliability design for impact vibration of hydraulic pressure pipeline systems
Metal flowing of involute spline cold roll-beating forming
Chinese Journal of Mechanical Engineering : Volume 26, Issue 4, July 2013
Chinese Journal of Mechanical Engineering : Volume 26, Issue 3, May 2013
Chinese Journal of Mechanical Engineering : Volume 26, Issue 2, March 2013
Chinese Journal of Mechanical Engineering : Volume 26, Issue 1, January 2013
Chinese Journal of Mechanical Engineering : Volume 25

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Flexible time domain averaging technique

Content Provider Springer Nature Link
Author Zhao, Ming Lin, Jing Lei, Yaguo Wang, Xiufeng
Copyright Year 2013
Abstract Time domain averaging(TDA) is essentially a comb filter, it cannot extract the specified harmonics which may be caused by some faults, such as gear eccentric. Meanwhile, TDA always suffers from period cutting error(PCE) to different extent. Several improved TDA methods have been proposed, however they cannot completely eliminate the waveform reconstruction error caused by PCE. In order to overcome the shortcomings of conventional methods, a flexible time domain averaging(FTDA) technique is established, which adapts to the analyzed signal through adjusting each harmonic of the comb filter. In this technique, the explicit form of FTDA is first constructed by frequency domain sampling. Subsequently, chirp Z-transform(CZT) is employed in the algorithm of FTDA, which can improve the calculating efficiency significantly. Since the signal is reconstructed in the continuous time domain, there is no PCE in the FTDA. To validate the effectiveness of FTDA in the signal de-noising, interpolation and harmonic reconstruction, a simulated multi-components periodic signal that corrupted by noise is processed by FTDA. The simulation results show that the FTDA is capable of recovering the periodic components from the background noise effectively. Moreover, it can improve the signal-to-noise ratio by 7.9 dB compared with conventional ones. Experiments are also carried out on gearbox test rigs with chipped tooth and eccentricity gear, respectively. It is shown that the FTDA can identify the direction and severity of the eccentricity gear, and further enhances the amplitudes of impulses by 35%. The proposed technique not only solves the problem of PCE, but also provides a useful tool for the fault symptom extraction of rotating machinery.
Starting Page 1022
Ending Page 1030
Page Count 9
File Format PDF
ISSN 10009345
Journal Chinese Journal of Mechanical Engineering
Volume Number 26
Issue Number 5
e-ISSN 21928258
Language English
Publisher Springer Berlin Heidelberg
Publisher Date 2013-09-28
Publisher Place Berlin, Heidelberg
Access Restriction Subscribed
Subject Keyword time domain averaging, chirp Z-transform, period cutting error, de-noising, interpolation Mechanical Engineering Theoretical and Applied Mechanics Manufacturing, Machines, Tools Engineering Thermodynamics, Heat and Mass Transfer Power Electronics, Electrical Machines and Networks Electronics and Microelectronics, Instrumentation
Content Type Text
Resource Type Article
Subject Industrial and Manufacturing Engineering Mechanical Engineering
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