崔自强

崔自强

中文名:崔自强
职业:教师
详细介绍:崔自强,男,博士,天津大学电气自动化与信息工程学院副教授,硕士生导师。>>>查看崔自强详细资料

崔自强学术成果

主要科研项目:(1) 2017.01-2020.12,基于ECT/EMT双模成像的气/液/固三相流过程参数表征方法,国家自然科学基金-面上项目,批准号:61671319,项目负责人;2017.01-2021.12,基于电/磁双模层析成像的高固含率气液固三相流态化实验装置,国家重大科学仪器项目,批准号:61627803,第1参与人;2013.01-2015.12,场聚焦电容/电阻双模态成像方法研究,国家自然科学基金-青年项目,批准号:61201350,项目负责人;2015.01-2016.12,管路内油液的在线电磁检测方法研究,北洋青年骨干教师项,项目负责人;2017.01-2020.12,气液环状流时空流动结构及流动特性光学诊断新方法研究,国家自然科学基金-面上项目,批准号:61671321,主要参加人;2017.01-2020.12,基于超声调制的多频生物电阻抗层析成像新方法,国家自然科学基金-面上项目,批准号:61671322,主要参加人;2016.01-2019.12,肺癌诊断与监护的电学层析新技术,国家自然科学基金-面上项目,批准号:61573251,主要参加人;2012.01-2015.12,电学层析聚类成像研究,国家自然科学基金-面上项目,批准号:61174014,主要参加人;2014.01-2015.01,用于气固旋流器监测的电容层析成像系统,横向项目,项目负责人;代表性论著、学术著作:学术论文:Hao, Z.; Cui, Z.*; Yue, S.; Wang, H. 2-d median filter-based impulsive noise reduction in multi-frequency phase-sensitive demodulation of electrical impedance tomography. IEEE Transactions on Instrumentation and Measurement (Early Access), 2019.Sun, B.; Yue, S.; Hao, Z.; Cui, Z.; Wang, H. An improved Tikhonov regularization method for lung cancer monitoring using electrical impedance tomography. IEEE Sensors Journal, 2019, 19, 3049-3057.Cui, Z.; Zhang, W.; Hu, Y.; Wang, H. Further development in differential electrical capacitance tomography. IEEE Sensors Journal, 2018, 18, 9781-9791.Cui, Z.; Zhang, W. & Wang, H., Magnetic permeability measurement method for particle materials, 2018 IEEE International Instrumentation and Measurement Technology Conference (I2MTC), IEEE, 2018Hao, Z.; Cui, Z.*; Yue, S. & Wang, H., Singular value decomposition based impulsive noise reduction in multi-frequency phase-sensitive demodulation of electrical impedance tomography, Review of Scientific Instruments, AIP Publishing, 2018, 89, 064702.Cui, Z.; Chen, Y.; Zou, P.; Wang, C. & Wang, H., Development of electromagnetic tomography system using LCR meter, IEEE International Instrumentation and Measurement Technology Conference (I2MTC), IEEE, 2018Hao, Z.; Cui, Z.*; Yue, S. & Wang, H., Impulsive noise removal in multi-frequency phase sensitive demodulation for electrical impedance tomography, 2018 IEEE International Instrumentation and Measurement Technology Conference (I2MTC), IEEE, 2018Hao, Z.; Cui, Z.*; Yue, S. & Wang, H., Amplitude demodulation for electrical capacitance tomography based on singular value decomposition, Review of Scientific Instruments, AIP Publishing, 2018, 89, 074705Wang, C.; He, H.; Cui, Z.; Cao, Q.; Zou, P. & Wang, H., A novel EMT system based on TMR sensors for reconstruction of permeability distribution, Measurement Science and Technology, IOP Publishing, 2018Cui, Z.; Wang, Q.; Xue, Q.; Fan, W.; Zhang, L.; Cao, Z.; Sun, B.; Wang, H. & Yang, W.A review on image reconstruction algorithms for electrical capacitance/resistance tomography, Sensor Review, 2016, 36, 429-445Cui, Z.; Wang, H.; Yin, W. & Yang, W., Impulsive noise reduction in digital phase-sensitive demodulation by nonlinear filtering, Measurement Science and Technology, IOP Publishing, 2015, 26, 075401Cui, Z.; Wang, H. & Yin, W., Electrical capacitance tomography with differential sensor, IEEE Sensors Journal, IEEE, 2015, 15, 5087-5094.Cui, Z.; Wang, H.; Yin, W. & Yang, W., Flow velocity measurement by cross-correlation with tailored modulation, Instrumentation and Measurement Technology Conference (I2MTC), 2015 IEEE International, IEEE, 2015, 1906-1909Sun, B.; Yue, S.; Cui, Z. & Wang, H., A new linear back projection algorithm to electrical tomography based on measuring data decomposition, Measurement Science and Technology, IOP Publishing, 2015, 26, 125402Yang, C.; Cui, Z.; Xue, Q.; Wang, H.; Zhang, D. & Geng, Y., Application of a high speed ECT system to online monitoring of pneumatic conveying process, Measurement, 2014, 48, 29-42Cui, Z.; Yang, C.; Sun, B. & Wang, H., Liquid film thickness estimation using electrical capacitance tomography, Measurement Science Review, 2014, 14, 8-15Cui, Z.; Wang, H. & Yin, W., Nonlinear filtering in digital phase sensitive demodulation, Instrumentation and Measurement Technology Conference (I2MTC), 2014 IEEE International, IEEE, 2014Cui, Z.; Wang, H.; Yang, C. & Xu, Y., Estimation of in-tube oil film thickness using electrical capacitance tomography, Instrumentation and Measurement Technology Conference (I2MTC), 2013 IEEE International, IEEE, 2013, 1-4Xue, Q.; Wang, H.; Yang, C. & Cui, Z., Dynamical lag correlation exponent based method for gas–solid flow velocity measurement using twin-plane electrical capacitance tomography, Measurement Science and Technology, IOP Publishing, 2012, 23, 085301Xue, Q.; Wang, H.; Cui, Z. & Yang, C., Electrical capacitance tomography using an accelerated proximal gradient algorithm, Review of Scientific Instruments, AIP, 2012, 83, 043704Cui, Z.; Wang, H.; Yang, C.; Zhang, D. & Geng, Y., Development and application of ECT digital system for online flow measurement, Imaging Systems and Techniques (IST), 2012 IEEE International Conference on, IEEE, 2012, 599-604Xue, Q.; Wang, H.; Cui, Z. & Yang, C., An alternating direction algorithm for two-phase flow visualization using gamma computed tomography, Review of Scientific Instruments, AIP, 2012, 83, 123703Cui, Z.; Wang, H.; Yang, C.; Xu, Y.; Zhang, D. & Geng, Y., Application of a digital ECT system for measurements of dense-phase gas-solid flows, Instrumentation and Measurement Technology Conference (I2MTC), 2012 IEEE International, IEEE, 2012, 2410-2413Cui, Z.; Wang, H.; Chen, Z.; Xu, Y. & Yang, W., A high-performance digital system for electrical capacitance tomography, Measurement Science and Technology, IOP Publishing, 2011, 22, 055503Cui, Z.; Wang, H.; Chen, Z. & Yang, W., Image reconstruction for field-focusing capacitance imaging, Measurement Science and Technology, IOP Publishing, 2011, 22, 035501 专利:(1) 具有双层旋转电极的电容层析成像传感器,发明专利,授权号:201310420106.2;(2) 差分式电容层析成像传感器,发明专利,申请号:201510017115.6;(3) 差分式电容层析成像传感器及测量方法,发明专利,申请号:201510017114.1;(4) 一种用于电学层析成像系统的幅值解调方法,发明专利,申请号:2018103251692;(5) 一种用于磁导率测量的传感器及方法,发明专利,申请号:2017102581050;(6) 基于圆弧形网格剖分的电学层析图像重建方法,发明专利,申请号:2016100248561;(7) ECT/ERT双模态成像系统交叉式复合阵列传感器,发明专利,申请号:2007100568575;(8) 基于动力学相关因子指数与互相关技术的栓塞流速度测量方法,发明专利,申请号:2012101885234。

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