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张建秋

系别: 电子工程系
职称: 教授 博导
职务:
办公室: 物理楼137室、133室
电话: 021-55664226,55664227
E-mail: jqzhang@fudan.ac.cn
主页: http://www.fudanac.org/
   
教育背景
7/1/1982   华东工程学院   本科学生
2/1/1992至7/1/1996   哈尔滨工业大学电气工程系   硕士、博士研究生
2/1/1998至10/1/1998   芬兰赫尔辛基工业大学智能功率电子研究院   Visiting Research Scientist
1/1/1999至7/1/2002   英国格林威治大学工程学院   Postdoctoral Research fellow (博士后)和Senior Research Fellow
研究方向
信号处理及其应用、检测与估计、图象处理及其应用、智能仪器仪表
课程教学
本科课程:数字信号处理
博士生课程:数据融合的理论及其应用 传感器信号处理的理论和方法
研究生课程:现代电子测量技术
学术兼职
IEEE高级会员
科研项目
国家自然科学基金 :“超复数整体描述、分析和处理矢量信号的理论及应用研究”
973项目的子课题<分子影像处理中图像配准与融合方法研究>:“分子影像关键科学技术问题的研究”
国家自然科学基金:“多传感器自确认融合的理论研究”
上海市科委创新行动计划:"高性能低功耗低密度码(LDPC)译码器开发及其嵌入式应用”
上海市科委数字上海与现代服务业专项:“基于自组织无线传感网技术的水环境监测系统”
上海市科委科技攻关项目:“DGPS/DR/MM组合式高端车载导航仪”
教育部回国人员启动基金:“自确认(Self-Validation)传感器的理论和应用研究”
Leverhlume Trust (U.K.):"Wavelet and Soft Computing Based Self-validation and Fault Diagnosis of Sensors,"
Academic Finland, Finland:"Fault Detection, Diagnosis, and Accommodation System Based Soft Computing and Its Application for Sensors,"
国家自然科学基金:"基于采样计算式方法的畸变电网波形参数测量方法的理论研究"
论文著作
1.IEEE Trans. Signal Processing,A Novel Scheme for the Design of Approximate HilbertTransform Pairs of Wavelet Bases,,vol.56,no.6,2289-2297
2.IEEE Trans. Circuits and Systems for Video Technology,Robust and Accurate Object Tracking under Various Types of Occlusions,,vol.18,no.2,223-236
3.IEEE Trans. Power Electron,A Novel Inverter-Output Passive Filter for Reducing Both Differential- and Common-Mode dv/dt at the Motor Terminals in PWM Drive Systems,,vol.54, no.1,419-426
4.IEEE Trans. Instrum. Meas,Detecting the Blockage of the Sensing-lines of a Differential-Pressure Flow Sensor in a Dynamic Process Using Wavelet Transform Techniques,,vol.55, no.4,1143-1148
5.Physica D-Nonlinear Phenomena ,A nonlinear correlation measure for multivariable data set,,200(3-4),287-295
6.IEEE Trans. Instrum. Meas,A wavelet-based multi-sensor data fusion algorithm,,vol.53,no.6,1539-1545
7.IEEE Trans. Instrum. Meas,Fast Quantitative Analysis and Information Deviation for Evaluating the Performances of Image Fusion Techniques,,vol.53,no.5,1441-1447
8.IEEE Trans. Instrum. Meas,A wavelet-based method for measuring particulate velocity by an active sensor,,vol.53, no.4,1345-1351
9.Powder Technology,On-line continuous measurement of particle size using electrostatic sensor,,vol.135-136,164-168
10.IEEE Trans. Instrum. Meas,A Quantitative Method for Evaluating the Performances of Hyperspectral Image Fusion,,vol.52, no.4,1041-1047
11.Digital signal processing: A Review Journal,An eigenvalue residuum-based criterion for detection of the number of sinusoids in white Gaussian noise,,vol.13, no.2,275-283
12.IEEE Trans. Instrum. Meas,ADC characterization based on singular value decomposition,,vol.51, no.2,138-143
13.IEEE Trans. on Instrum. Meas,A wavelet-based approach to abrupt fault detection and diagnosis of sensors,,vol.50, no.5,1389-1396
14.IEE proceeding A: Science, Measurement and Technology,On-line validating of the measurement uncertainty using wavelet transforms,,vol.148, no.5,210-214
15.IEEE Trans. Instrum. Meas,An adaptive window function method for power measurement,,vol.49, no.6,1194-1200
16.Measurement Science and Technology,Assessing blockage of the sensing line in a differential-pressure flow sensor by using the wavelet transform of its output,,vol.11 no.3,178-184
17.IEEE Trans. Instrum. Meas,The novel fast balance technique of digital ac bridge,,vol. 47,371-377
18.IEEE Trans. Instrum. Meas,Sinewave fit algorithm based on total least-squares method with application to ADC effective bits measurement,,vol. 46,1026-1030
19.IEEE Trans. Instrum. Meas,A new sensor for basis-weight and ash-content of paper,,vol. 46,937-940
获奖情况
参加完成的科研项目分别于1998年和1994年获部级科技进步二等奖两次。
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