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Chen Diyi

Sourse:   Date:2015-06-17
Name:   Diyi Chen (Dean for short)
Gender:  Male
Nationality: Chinese
Degree:  Ph. D
Professional Qualification: Associate Professor
University: Department of Electrical Engineering,
Institute of Water Resources and Hydropower Research, Northwest A&F University
Phone:  +86-181-6198-0277 (Mobile)
Fax:  +86-29-87082901
Address:  No.23#, Weihui Road, Yangling, Shaanxi, China
Postcode:  712100
 
Research Interests:
Stability of Hydropower Plants and Nonlinear Control
Fractional calculus and its application in Engnieering
Modelling of Hydropower Plants and Nonlinear analysis
Stability of Nonlinear Systems with Stochastic Excitation
Nonlinear Systems: Dynamics and control
Prediction of Time Series and its Application in Water Project.
Nonlinear Circuits and Systems
 
International Activities/ Relations
1. Visiting scholar, School of Electrical Electronic and Computer Engineering, Arizona State University, USA, Jul. 27, 2012 - Jul. 27, 2013
 
Refreee Experiences for the International Journals and/or Conferences
 
1. Editor for American Journal of Computation, Communication and Control, American Journal of Energy and Power Engineering, International Journal of Electrical and Electronic Science and International Journal of Engineering and Industries.
 
2. Reviewer for Nonlinear Dynamics, International Journal of Electrical Power and Energy Systems, IET Control Theory and Applications, Journal of Sound and Vibration, International Journal of Bifurcation and Chaos, Journal of Vibration and Control, Computers and Mathematics with Applications, Abstract and Applied Analysis, Journal of the Franklin Institute, Applied Mathematics and Computers, Physic A, Circuits, Systems & Signal Processing, IET Science, Measurement & Technology, Discrete Dynamics in Nature and Society, International Journal of Adaptive Control and Signal Processing, International Journal of Automation and Computing, International Journal of Uncertainty, Fuzziness and Knowledge-Based Systems, Physicca Scripta, Results in Physics, AIP Advances, Chinese Physics B, Journal of Agricultural Engineering and Biotechnology, Plos one and so on.
 
Work Experience
1.     Jul., 2008 - Dec. 2013, Assistant Professor, Department of Electrical Engineering, Northwest A&F University.
2.     Jan, 2014 - present, Associate Professor, Department of Electrical Engineering, Northwest A&F University.
3.     Jul. 27, 2012 - Jul. 27, 2013, visiting scholar, School of Electrical Electronic and Computer Engineering, Arizona State University, USA
 
Research Projects
1. Nonlinear dynamics of a Francis hydro-turbine governing system and it control. China National Science Foundation ( No. 51479173) 2012.1-2014.12
2. Transient stability of hydro-turbine governing system with stochastic excitations and its control. China National Science Foundation ( No. 51479173) 2015.1-2018.12
 
Selected Publications
1.     Chen Di-Yi, Liu Yu-Xiao, Ma Xiao-Yi, Zhang Run-Fan. Control of a class of fractional-order chaotic systems via sliding mode. Nonlinear Dynamics, 2012, 671: 893-901.
2.     Chen Di-Yi, Zhao Wei-Li, Ma Xiao-Yi, Zhang Run-Fan, No-chattering sliding mode control chaos in Hindmarsh-Rose neurons with uncertain parameters, Computers and Mathematics with Applications, 61 (2011) 3161-3171.
3.     Chen Di-Yi, Shen Tao, Ma Xiao-Yi. Sliding mode control of chaotic vibrations of spinning disks with uncertain parameter under bounded disturbance. Acta Phys. Sin., 2011, 60(5) 050505.
4.     Chen Di-Yi, Liu Yu-Xiao, Ma Xiao-Yi et al. No-chattering sliding mode control in a class of fractional-order chaotic systems, Chinese Physics B, 2011, 20(12): 120506 
5.     Chen Diyi, Zhang Runfan, Ma Xiaoyi Liu Si, Chaotic synchronization and anti-synchronization for a novel class of multiple chaotic systems via a sliding mode control scheme, Nonlinear Dynamics, 2012, 69(1-2): 35-55.
7.     Di-Yi Chen, Lin Shi, Hai-Tao Chen, Xiao-Yi Ma. Analysis and control of a hyperchaotic system with only one nonlinear term, Nonlinear Dynamics, 2012, 67(3): 1745-1752.
8.     Chen Diyi, Liu Ye, Ma Xiao-Yi. Parameter estimation of phase space reconstruction in chaotic time series based on RBF neural networks. Acta Phys. Sin., 2012, 61(10) 100501.
9.     Diyi Chen, Chengfu Liu, Cong Wu, Yongjian Liu, Xiaoyi Ma. A new fractional-order chaotic system and its synchronization with circuit simulation. Circ. Syst. Signal Pr., 2012, 31: 1599-1613
10.Diyi Chen, Peng Shi, Xiaoyi Ma. Control and Synchronization of Chaos in an Induction Motor System. International Journal of Innovative Computing, Information and Control, 2012,8 (10B): 7237-7248
12.Diyi Chen, Weili Zhao, Xiaoyi Ma, Runfan Zhang, Control and synchronization of chaos in RCL-shunted Josephson junction with noise disturbance using only one controller term, Abstract and Applied Analysis, 2012, doi: 10.1155/2012/378457
13.Diyi Chen, Runfan Zhang, J. C. Sprott, Xiaoyi Ma, Synchronization between integer-order chaotic systems and a class of fractional-order chaotic system based on fuzzy sliding mode control, Nonlinear Dynamics, 70 2012 1549-1561
14.Diyi Chen, Run-Fan Zhang, Xiaoyi Ma, Juan Wang, Synchronization between a novel class of fractional-order and integer orders chaotic systems via sliding mode controller, Chinese Physics B, 21(12) 2012 120507
16.Diyi Chen, Weili Zhao, Xiaoyi Ma, Juan Wang, Control for a class of 4D chaotic systems with random-varying parameters and noise disturbance, Journal of Vibration and Control, 19(7) 2013, 1080-1086. 
17.Diyi Chen, Wenting Han, Prediction of multivariate chaotic time series via radial basis function neural network, Complexity, 2013, 18(4): 55-66.
18.Diyi Chen, Weili Zhao, Julien Clinton Sprott, Xiaoyi Ma, Application of Takagi-Sugeno fuzzy model to a class of chaotic synchronization and anti-synchronization, Nonlinear Dynamics, 2013, 73: 1495-1505.
19.Diyi Chen, Weili Zhao, Xinzhi Liu, Xiaoyi Ma, Synchronization and anti-synchronization of a class of chaotic systems with non-identical orders and uncertain parameters, Journal of Vibration and Control, 19(7) 2013, 1080-1086.
20.Diyi Chen, Cong Wu, Herbert H. C. Iu, Xiaoyi Ma, Circuti simulation for synchronization fo fractional-order and integer order chaotic system, Nonlinear Dynamics, 2013, 73: 1671-1686.
22.Diyi Chen, Cong Ding, Xiaoyi Ma, Pu Yuan, Duoduo Ba. Nonlinear dynamical analysis of hydro-turbine governing system with a surge tank. Applied Mathematical Modelling, 2013, 37: 7611-7623
23.Lijie Diao, Xiaofei Zhang, Diyi Chen*, Fractional-order multiple RLαCβ circuit, Acta Phys. Sin., 2014, 63(3), 038401
24.Runfan Zhang, Diyi Chen*, Younghae Do, Xiaoyi Ma, Synchronization and anti-synchronization of fractional dynamical networks, Journal of Vibration and Control, 2014, doi: 10.1177/1077546314522506
25.Diyi Chen, Runfan Zhang, Xiaoyi Ma, Fractional order Lyapunov stability theorem and its applications in synchronization of complex dynamical networks, Communications in Nonlinear Science and Numerical Simulation, 2014, 19(12): 4105-4121
26.Diyi Chen, Cong Ding, Younghae Do, Xiaoyi Ma, Hua Zhao, Yichen Wang, Nonlinear dynamic analysis for a Francis hydro-turbine governing system and its control, Journal of the Franklin Institute: Engineering and Applied mathematics, 351 (2014) 4596-4618
27.Jianwei Zhu, Diyi Chen*, Hua Zhao, Ruifang Ma, Nonlinear dynamic analysis and modeling of fractional permanent magnet synchronous motors, Journal of Vibration and Control, doi: 10.1177/1077546314545099
28.Diyi Chen, Peng Xu, Rui Zhou, Xiaoyi Ma, A CMAC-PID based on pitch angle controller for direct drive permanent magnet synchronous wind turbine, Journal of Vibration and Control, doi:10.1177/1077546314543913
29.Hao Zhang, Di-Yi Chen*, Bei-Bei Xu, Run-Fan Zhang, Controllability of fractional directed complex networks, Modern physics letters b, 28(27) (2014) 1450211
30.Hao Zhang, Di-Yi Chen*, Bei-Bei Xu, Fei-Fei Wang, Nonlinear modeling and dynamic analysis of hydro-turbine governing system in the process of load rejection transient, Energy Conversion and Management, 90 (2015) 128-137
 
Homepage:
 
https://www.researchgate.net/profile/Diyi_Chen
http://sjxy.nwsuaf.edu.cn/show.php?articleid=7683 in Chinese