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Featured researches published by Binxin Hu.


Measurement Science and Technology | 2016

A compact wideband precision impedance measurement system based on digital auto-balancing bridge

Binxin Hu; Jinyu Wang; Guangdong Song; Faxiang Zhang

The ac impedance spectroscopy measurements are predominantly taken by using impedance analyzers based on analog auto-balancing bridge. However, those bench-top analyzers are generally complicated, bulky and expensive, thus limiting their usage in industrial field applications. This paper presents the development of a compact wideband precision measurement system based on digital auto-balancing bridge. The methods of digital auto-balancing bridge and digital lock-in amplifier are analyzed theoretically. The overall design and several key sections including null detector, direct digital synthesizer-based sampling clock, and digital control unit are introduced in detail. The results show that the system achieves a basic measurement accuracy of 0.05% with a frequency range of 20 Hz?2 MHz. The advantages of versatile measurement capacity, fast measurement speed, small size and low cost make it quite suitable for industrial field applications. It is demonstrated that this system is practical and effective by applying in determining the impedance-temperature characteristic of a motor starter PTC thermistor.


Fourth Asia Pacific Optical Sensors Conference | 2013

Application of the fiber Bragg Grating (FBG) sensors in coal mines

Jinyu Wang; Guangdong Song; Binxin Hu; Lianqing Li; Tongyu Liu

The FBG strain sensors were applied to the Dongtan Mine to monitor the stress variation of the lined wall in the gateway retained along goaf of No. 3203 coal mining face on line. The results showed that the FBG strain sensor with high measuring range could measure the stress variation accurately during the support process of the gateway retained along goaf and could provide the basis to further optimize the support structure and to determine the support plan of the gateway retained along the goaf. The FBG micro-seismic sensors were used in Xinglong Mine to detect micro-seismic signal. The signals are well received and analyzed to determine the earthquake source and do warming. The FBG sensors and detecting system show great prospect in micro-seismic detection, and geological disasters detecting.


Fourth Asia Pacific Optical Sensors Conference | 2013

Distributed fiber optic microseismic monitoring system for coal mines

Binxin Hu; Tongyu Liu; Jinyu Wang; Guangdong Song

Microseismic monitoring is essential for rock burst predication in coal mines. However, the existing monitoring instruments based on electric geophone have inherent limitations and hardly progress further. This paper presents the design and implementation of a novel microseismic monitoring system using fiber optic sensing and distributed data acquisition techniques. The technical details including seismic sensor, interrogation system, and seismic substation are introduced. The results show that the system achieves a bandwidth of 0.5-400 Hz and a dynamic range of 80 dB. The location accuracy reaches 10 m by reasonable configuration of sensors, and so it is particularly suitable for precision mine microseismic monitoring.


Fourth Asia Pacific Optical Sensors Conference | 2013

Research on microseismic energy calculation and duration automatically picking

Guangdong Song; Binxin Hu; Jinyu Wang; Jian Guo; Tongyu Liu

Accurate measurement of energy is a technical difficulty that various microseismic monitoring systems are facing. In this article, we applied the groundbreaking fiber optics microseismic monitoring system to mine rock burst monitoring for the first time around the world. We suggest to calculate microseismic energy via the duration of vibration. Precise picking of P wave first arrival and end point is essential to microseismic energy calculation. According to the huge energy difference before and after the arrival of the seismic wave, we use the sliding time-window energy ratio method to pick the first arrival and end point, and put forward the quantitative relationship between the sliding time-window width TWL and the sampling frequency as well as the signal dominant frequency for the first time. The results of P wave automatically picking are almost the same as those manually picked. However the end point may need to be corrected if wave distortion occurred.


Measurement | 2016

Design and application of fiber Bragg grating (FBG) geophone for higher sensitivity and wider frequency range

Jinyu Wang; Binxin Hu; Wei Li; Guangdong Song; Long Jiang; Tongyu Liu


Measurement | 2018

Fibre optic sensors for coal mine hazard detection

Tongyu Liu; Yubin Wei; Guangdong Song; Binxin Hu; Lianqing Li; Guangxian Jin; Jinyu Wang; Yanfang Li; Chengxiang Song; Zhidong Shi; Lin Zhao; Jie Hu; Weisong Zhao; Moyu Hou; Runchun Li; Jiqiang Wang


Photonic Sensors | 2017

Research on the surface subsidence monitoring technology based on fiber Bragg grating sensing

Jinyu Wang; Long Jiang; Zengrong Sun; Binxin Hu; Faxiang Zhang; Guangdong Song; Tongyu Liu; Junfeng Qi; Longping Zhang


Photonic Sensors | 2016

A precision fiber Bragg grating interrogation system using long-wavelength vertical-cavity surface-emitting laser

Binxin Hu; Guangxian Jin; Tongyu Liu; Jinyu Wang


international conference on optical communications and networks | 2017

A precision edge filter interrogation system for mine Fiber Bragg Grating micro-seismic sensors

Binxin Hu; Guangdong Song; Hua Zhang; Tongyu Liu


Archive | 2017

Development of an automatic algorithm for determination of micro- seismic energy and duration

Guangdong Song; Binxin Hu; Jinyu Wang; Jian Guo; Tongyu Liu

Collaboration


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Jinyu Wang

Qilu University of Technology

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Tongyu Liu

Qilu University of Technology

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Guangdong Song

Qilu University of Technology

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Jiqiang Wang

Qilu University of Technology

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Lin Zhao

Qilu University of Technology

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Moyu Hou

Qilu University of Technology

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Weisong Zhao

Qilu University of Technology

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Yanfang Li

Qilu University of Technology

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Yubin Wei

Qilu University of Technology

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