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Featured researches published by Mengbao Fan.


Sensors | 2016

Frequency Optimization for Enhancement of Surface Defect Classification Using the Eddy Current Technique

Mengbao Fan; Qi Wang; Binghua Cao; Bo Ye; Ali Imam Sunny; Gui Yun Tian

Eddy current testing is quite a popular non-contact and cost-effective method for nondestructive evaluation of product quality and structural integrity. Excitation frequency is one of the key performance factors for defect characterization. In the literature, there are many interesting papers dealing with wide spectral content and optimal frequency in terms of detection sensitivity. However, research activity on frequency optimization with respect to characterization performances is lacking. In this paper, an investigation into optimum excitation frequency has been conducted to enhance surface defect classification performance. The influences of excitation frequency for a group of defects were revealed in terms of detection sensitivity, contrast between defect features, and classification accuracy using kernel principal component analysis (KPCA) and a support vector machine (SVM). It is observed that probe signals are the most sensitive on the whole for a group of defects when excitation frequency is set near the frequency at which maximum probe signals are retrieved for the largest defect. After the use of KPCA, the margins between the defect features are optimum from the perspective of the SVM, which adopts optimal hyperplanes for structure risk minimization. As a result, the best classification accuracy is obtained. The main contribution is that the influences of excitation frequency on defect characterization are interpreted, and experiment-based procedures are proposed to determine the optimal excitation frequency for a group of defects rather than a single defect with respect to optimal characterization performances.


Journal of Sensors | 2017

Enhanced Measurement of Paper Basis Weight Using Phase Shift in Terahertz Time-Domain Spectroscopy

Mengbao Fan; Binghua Cao; Gui Yun Tian

THz time-domain spectroscopy has evolved as a noncontact, safe, and efficient technique for paper characterization. Our previous work adopted peak amplitude and delay time as features to determine paper basis weight using terahertz time-domain spectroscopy. However, peak amplitude and delay time tend to suffer from noises, resulting in degradation of accuracy and robustness. This paper proposes a noise-robust phase-shift based method to enhance measurements of paper basis weight. Based on Fresnel Formulae, the physical relationship between phase shift and paper basis weight is formulated theoretically neglecting multiple reflections in the case of normal incidence. The established formulation indicates that phase shift correlates linearly with paper basis weight intrinsically. Subsequently, paper sheets were stacked to fabricate the samples with different basis weights, and experimental results verified the developed mathematical formulation. Moreover, a comparison was made between phase shift, peak amplitude, and delay time with respect to linearity, accuracy, and noise robustness. The results show that phase shift is superior to the others.


Ndt & E International | 2015

Elimination of liftoff effect using a model-based method for eddy current characterization of a plate

Mengbao Fan; Binghua Cao; Panpan Yang; Wei Li; Gui Yun Tian


Sensors and Actuators A-physical | 2016

Thickness measurement using liftoff point of intersection in pulsed eddy current responses for elimination of liftoff effect

Mengbao Fan; Binghua Cao; Gui Yun Tian; Bo Ye; Wei Li


Ndt & E International | 2017

Pulsed eddy current thickness measurement using phase features immune to liftoff effect

Mengbao Fan; Binghua Cao; Ali Imam Sunny; Wei Li; Gui Yun Tian; Bo Ye


Chinese Journal of Mechanical Engineering | 2017

Pulsed Eddy Current Non-destructive Testing and Evaluation: A Review

Ali Sophian; Gui Yun Tian; Mengbao Fan


Archive | 2012

Method and device for testing parameters of metal pipe fitting with electric eddy under the eccentric state of probe

Mengbao Fan; Binghua Cao; Wei Li; Yang Ni; Yadan Yin


Insight | 2018

Analytical modelling of eddy current response from driver pick-up coils on multi-layered conducting plates

Binghua Cao; Chao Li; Mengbao Fan; Bo Ye; Shang Gao


ieee sensors | 2018

Lift-Off Point of Intersection in Spectral Pulsed Eddy Current Signals for Thickness Measurement

Dongdong Wen; Mengbao Fan; Binghua Cao; Be Ye; Gui Yun Tian


Journal of Sensors | 2018

Corrigendum to “Enhanced Measurement of Paper Basis Weight Using Phase Shift in Terahertz Time-Domain Spectroscopy”

Mengbao Fan; Binghua Cao; Gui Yun Tian

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Binghua Cao

China University of Mining and Technology

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Wei Li

China University of Mining and Technology

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Bo Ye

Kunming University of Science and Technology

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Dongdong Wen

China University of Mining and Technology

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Ali Sophian

University of Huddersfield

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Be Ye

Kunming University of Science and Technology

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Panpan Yang

China University of Mining and Technology

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Qi Wang

China University of Mining and Technology

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