教师姓名:孙克辉
职称:教授
职务:院长
教师拼音名称:Sun Kehui
性别:男
所在单位:物理学院
学历:博士研究生毕业
学位:博士学位
毕业院校:Central South University
在职信息:在职
学科:物理学
招生学科:物理学

孙克辉,博士,中南大学二级教授,院长。中国科协“英才计划”物理学科工作委员会委员,湖南省物理学会、湖南省量子科技学会副理事长,中国电子学会电路与系统分会混沌与非线性电路专业委员会副主任。1991年、1998年、2005年先后在中南工业大学、中南大学获应用物理学理学学士、工业自动化工学硕士和控制理论与控制工程工学博士学位;2008年在美国威斯康星大学交流访问一年;2009年于华南理工大学信息与通信工程博士后流动站出站。1991年毕业后留校,1996年晋升讲师,2001年晋升副教授,2006年晋升教授。目前担任国家一流建设专业负责人,主讲非线性动力学、信号与系统本科生课程、混沌保密通信系统研究生课程,首批国家级线下一流课程负责人,获教学质量优秀奖5次,省级教改成果特等奖1项(排第2)、一等奖1项、二等奖2项,2004年获中南大学首届师德先进个人,12次获评湖南省优秀博士、硕士学位论文指导教师,2018年获宝钢优秀教师奖,2019年湖南省首届优秀研究生导师,2025年获评湖南省芙蓉计划教书育人优秀个人。已发表ESI学术论文220多篇,H指数47,爱思唯尔2020年~2025年(物理学)中国高被引学者;获授权发明专利7项,转让2项,出版专著4部,参编3部,获湖南省自然科学三等奖1项。主要从事非线性物理、混沌理论与应用、非线性电路与系统等方面的研究。

›国家自然科学基金:离散忆阻神经网络建模与同步调控(62471496),立项时间:2024-08-23,结项时间:2028-12-31.
›广东诺能泰自动化科技有限公司:线圈式气体质量传感器及流量计开发,孙克辉,开始日期:2023-11-18,立项时间:2024-01-04,结项时间:2024-11-18.
›湖南中矿金禾机器人研究院有限公司:轨道式重力储能电气系统发电技术与方案设计,孙克辉,开始日期:2023-10-08,立项时间:2023-10-22,结项时间:2023-12-31.
›湖南特思科智能科技有限公司:一种新型网格正弦腔超混沌映射系统,孙克辉,开始日期:2020-12-22,立项时间:2023-04-17,结项时间:2021-12-22.
›国家自然科学基金委员会:分数阶离散忆阻器建模及其在混沌反控制中的应用(62071496),孙克辉,开始日期:2021-01-01,立项时间:2021-01-01,结项时间:2024-12-31.
›基于分子与多物理场模拟的高炉炉缸内形在线监测与优化方法,开始日期:2016-01-30,立项时间:2016-01-30,结项时间:2019-12-30.
›国家自然科学基金:强化混沌系统的动力学特性分析与电路实现研究,孙克辉,开始日期:2012-01-30,立项时间:2012-01-30,结项时间:2015-12-30.
›留学归国人员启动基金项目:分数阶混沌系统动力学特性分析与同步控制,孙克辉,开始日期:2011-06-30,立项时间:2011-06-30,结项时间:2013-06-30.
›中国博士后基金:分数阶混沌系统的同步控制与应用研究,孙克辉,开始日期:2007-09-30,立项时间:2007-09-30,结项时间:2009-11-30.
›湖南省自然科学基金:离散混沌系统的动力学特性分析与应用研究,孙克辉,开始日期:2005-01-30,立项时间:2005-01-30,结项时间:2006-12-30.

›Zhang Z, Sun K, Wang H, Chen X, Mao M.Constructing multi-cavity attractors in discrete Hopffeld neural system via pulse control.Chaos, Solitons & Fractals, 2026, 210: 118622.
›Chen X, Sun K, Wang H, Liu J, Mao M.Dynamics and its circuit implementation of discrete memristive improved chaotic neuron model.Nonlinear Dynamics, 2026, 114: 657.
›Zhang Z, Sun K, Wang H.Design and implementation of a heterogeneous multi-cavity hyperchaotic map derived from complex exponential functions.Chaos, 2026, 36: 033114.
›Mao M, Sun K, Wang H, Chen X.Generation and interaction dynamics of target waves in a memristive Rulkov neural network.Chaos, Solitons & Fractals, 2026, 208: 118188.
›Yao Z, Sun K, Wang H.Spatiotemporal patterns in FitzHugh-Nagumo network and its application in image encryption.Neural Networks, 2025, 195: 108204.
›Liu J, Sun K, Wang H, Liu W.An anti-degradation chaotic map and its statistical robustness analysis.IEEE Transactions on Industrial Electronics, 2025, 72 (12) : 14533-14542.
›Z. Yao, K. Sun, H. Wang.Dynamical mechanism of a memristor and its phase transition.Communications in Theoretical Physics, 2025, 77 (5) : 055004.
›Z. Yao, H. Wang, H. Chen, K. Sun, W. Zhu.Spatiotemporal dynamics and synchronization in a memristive Chialvo neural network.Nonlinear Dynamics, 2025, 113 (9) : 10365-10377.
›Z. Tang, H. Wang, W. Zhu, K. Sun.Dynamics and synchronization of fractional-order Rulkov neuron coupled with discrete fracmemristor.Chaos Solitons Fractals, 2025, 192: 116012.
›Z. Zhang, K. Sun, W. Zhu, H. Wang.Dynamics of the novel multi-cavity hyperchaotic map and its DSP implementation.Physica Scripta, 2024, 100 (1) : 015284.
›J. Liu, K. Sun, H. Wang.Cyclic symmetric dynamics in chaotic maps[J].Chaos, Solitons & Fractals, 2024, 189: 115684.
›Z. Xu, K. Sun, H. Wang.Dynamics and function projection synchronization for the fractional-order financial risk system[J].Chaos, Solitons & Fractals, 2024, 188: 115599.
›B. Li, K. Sun, H. Wang, W. Liu.A delay-disturbance method to counteract the dynamical degradation of digital chaotic systems and its application[J].Chaos, Solitons & Fractals, 2024, 182: 114843.
›J. Liu, K. Sun, H. Wang.Mechanism of multistability in chaotic maps[J].Chaos: An Interdisciplinary Journal of Nonlinear Science, 2024 (34) : 083102.
›W. Liu, K. Sun, S. He, H. Wang.The parallel chaotification map and its application[J].IEEE Transactions on Circuits and Systems I: Regular Papers, 2023, 70 (9) : 3689 - 3698.
›W. Zhu, K. Sun, S. He, H. Wang, W. Liu.A class of m-dimension grid multi-cavity hyperchaotic maps and its application[J].Chaos, Solitons & Fractals, 2023, 170: 113370.
›M. Jin, K. Sun, H. Wang.Hyperchaos, extreme multistability, and hidden attractors in the novel complex nonlinear system and its adaptive hybrid synchronization[J].Nonlinear Dynamics, 2022, 110: 3853–3867.
›Z. Yao, K. Sun, S. He.Firing patterns in a fractional-order FithzHugh–Nagumo neuron model[J].Nonlinear Dynamics, 2022, 110: 1807-1822.
›C. Wu, K. Sun, Y. Xiao.A Hyperchaotic Map with Multi Elliptic Cavities Based on Modulation and Coupling[J].The European Physical Journal Special Topics, 2021, 230: 2011-2020.
›C. Dong, K. Sun, S. He, H. Wang.A hyperchaotic cycloid map with attractor topology sensitive to system parameters[J].Chaos, 2021, 31 (8) : 083132.
›P. Cheng, K. Sun, C. Zhu.A novel image encryption algorithm based on the delayed maps and permutation-confusion-diffusion architecture[J].Security and Communication Networks, 2021, 6679288: 6679288.
›Y. Peng, K. Sun, S. He.A discrete memristor model and its application in Hénon map[J].Chaos, Solitons & Fractals, 2020, 137: 109873.
›Y. Xiao, K. Sun, S. He.Constructing chaotic map with multi cavity[J].The European Physical Journal Plus, 2020, 135: 21.
›Q. Xu, K. Sun, S. He, C. Zhu.An effective image encryption algorithm based on compressive sensing and 2D-SLIM[J].Optics and Lasers in Engineering, 2020, 134: 106178.
›C. Chen, K. Sun, Q. Xu.A color image encryption algorithm based on 2D-CIMM chaotic map[J].China Communication, 2020, 17 (5) : 12-20.
›Y. Peng, K. Sun, S. He.An improved return maps method for parameter estimation of chaotic systems[J].International Journal of Bifurcation and Chaos, 2020, 30 (4) : 2050058.
›L. Wang, K. Sun, Y. Peng, S. He.Chaos and complexity in a fractional-order higher-dimensional multicavity chaotic map[J].Chaos, Solitons & Fractals, 2020, 131: 109488.
›Q. Xu, K. Sun, C. Zhu.A visually secure asymmetric image encryption scheme based on RSA algorithm and hyperchaotic map[J].Physica Scripta, 2020, 95: 035223.
›S. He, K. Sun, X. Wu.Fractional symbolic network entropy analysis for the fractional-order chaotic systems[J].Physica Scripta, 2020, 95: 035220.
›S. He, K. Sun, Y. Peng, L. Wang.Modeling of discrete fracmemristor and its application[J].AIP Advances, 2020, 10: 015332.
›Y. Xiao, K. Sun, M. Yu, X. Xu.Dynamics of a new multi-cavity hyperchaotic map and its DSP implementation[J].International Journal of Bifurcation and Chaos, 2019, 29 (14) : (1950194)1-15.
›S. Dai, K. Sun, S. He, W. Ai.Complex chaotic attractor via fractal transformation[J].Entropy, 2019, 21 (11) : 1115.
›Q. Xu, K. Sun, C. Cao, C. Zhu.A fast image encryption algorithm based on compressive sensing and hyperchaotic map[J].Optics and Lasers in Engineering, 2019, 121: 203-214.
›D. Peng, K. Sun, S. He, A. O. A. Alamodi.Numerical analysis of a simplest fractional-order hyperchaotic system[J].Theoretical and Applied Mechanics Letters, 2019, 9 (4) : 220-228.
›C. Chen, K. Sun, S. He.A class of higher-dimensional hyperchaotic maps[J].The European Physical Journal Plus, 2019, 134 (8) : 410.
›S. He, K. Sun, Y. Peng.Detecting chaos in fractional-order nonlinear systems using the smaller alignment index[J].Physics Letters A, 2019, 383 (19) : 2267-2271.
›Y. Peng, K. Sun, D. Peng, W. Ai.Dynamics of a higher dimensional fractional-order chaotic map[J].Physica A: Statistical Mechanics and its Applicati, 2019, 525: 96-107.
›S. He, K. Sun, H. Wang.Dynamics and synchronization of conformable fractional-order hyperchaotic systems using the Homotopy analysis method[J].Communications in Nonlinear Science and Numerical, 2019, 73: 146-164.
›A. O. A. Alamod, K. Sun, W. Ai, C. Chen, D. Peng.Design new chaotic maps based on dimension expansion[J].Chinese Physics B, 2019, 28 (2) : 020503.
›Y. Peng, K. Sun, S. He, D. Peng.Parameter identification of fractional-order discrete chaotic systems[J].Entropy, 2019, 21 (27)
›D. Peng, K. Sun, S. He, A. O. A. Alamodi.What is the lowest order of the fractional-order chaotic systems to behave chaotically?[J].Chaos, Solitons & Fractals, 2019, 119: 163-170.
›C. Chen, K. Sun, Y. Peng, A. O. A. Alamodi.A novel control method to counteract the dynamical degradation of a digital chaotic sequence[J].The European Physical Journal Plus, 2019, 134 (31)
›W. Ai, K. Sun, Y. Fu.Design of multiwing-multiscroll grid compound chaotic system and its circuit implementation[J].International Journal of Modern Physics C, 2018, 2018, 29 (6) : 1850049.
›Y. Yin, K. Sun, S. He.Multiscale permutation Rényi entropy and its application for EEG signals[J].PLoS ONE, 2018, 13 (9) : e0202558.
›Y. Peng, K. Sun, S. He, X. Yang.Parameter estimation of complex chaotic system with unknown initial values[J].The European Physical Journal Plus, 2018, 2018, 133: (305)
›C. Cao, K. Sun, W. Liu.A novel bit-level image encryption algorithm based on 2D-LICM hyperchaotic map[J].Signal Processing, 2018, 143 (2) : 122-133.
›M. Yu, K. Sun, W. Liu, S. He.A hyperchaotic map with grid sinusoidal cavity[J].Chaos, Solitons & Fractals, 2018, 106 (1) : 107-117.
›J. Ruan, K. Sun, J. Mou, S. He, L. Zhang.Fractional-order simplest memristor-based chaotic circuit with new derivative[J].The European Physical Journal Plus, 2018, 2018, 133: (3)
›L. Zhang, K. Sun, W. Liu, S. He.A novel color image encryption scheme using fractional-order hyperchaotic system and DNA sequence operations[J].Chinese Physics B, 2017, 26 (10) : 100504.
›W. Liu, K. Sun, S. He.SF-SIMM high-dimensional hyperchaotic map and its performance analysis[J].Nonlinear Dynamics, 2017, 89 (4) : 2521-2532.
›L. Zhang, K. Sun, S. He, H. Wang, Y. Xu.Solution and dynamics of fractional-order 5-D hyperchaotic system with four wings[J].The European Physical Journal Plus, 2017, 132 (31) : 31.
›J. Ruan, K. Sun, J. Mou.Memristor-based Lorenz hyper-chaotic system and its circuit implementation[J].Acta Physica Sinica, 2016, 65 (19) : 190502.
›J. Mou, K. Sun, J. Ruan, S. He.A nonlinear circuit with two memcapacitors[J].Nonlinear Dynamics, 2016, 86 (3) : 1735–1744.
›S. He, K. Sun, S. Banerjee.Dynamical properties and complexity in the fractional-order diffusionless Lorenz system[J].The European Physical Journal – Plus, 2016, 131 (8) : 1-12.
›S. He, K. Sun, H. Wang.Multivariate permutation entropy and its application for complexity analysis of chaotic systems[J].Physica A, 2016, 461: 812-823.
›Y. Xu, K. Sun, S. He, L. Zhang.Dynamics of fractional-order simplified unified system based on Adomian decomposition method[J].The European Physical Journal-Plus, 2016, 131 (6) : 1-12.
›S. He, K. Sun, H. Wang, X. Ai.Design of n-dimensional multi-scroll Jerk chaotic system and its performances[J].Journal of Applied Analysis & Computation, 2016, 6 (4) : 1180-1194.
›S. He, K. Sun, H. Wang.Solution and dynamics analysis of a fractional-order hyperchaotic system[J].Mathematical Methods in the Applied Sciences, 2016, 39 (11) : 2965-2973.
›W. Liu, K. Sun, C. Zhu.A fast image encryption algorithm based on chaotic map[J].Optics and Lasers in Engineering, 2016, 84: 26-36.
›S. He, K. Sun, H. Wang.Synchronization of fractional-order time delayed chaotic systems with ring connection[J].European Physical Journal-Special Topics, 2016, 225 (1) : 97-106.
›X. Ai, K. Sun, S. He, H. Wang.Design of grid multiscroll chaotic attractors via transformations[J].International Journal of Bifurcation and Chaos, 2015, 25 (10) : 1530027.
›H. Wang, K. Sun, S. He.Characteristic analysis and DSP realization of fractional-order simplified Lorenz system based on Adomian decomposition method[J].International Journal of Bifurcation and Chaos, 2015, 25 (6) : 1550085.
›H. Wang, K. Sun, S. He.Dynamic analysis and implementation of a digital signal processor of a fractional-order Lorenz-Stenflo system based on the Adomian decomposition method[J].Physica Scripta, 2015, 90 (1) : 015206.
›Y. Wang, S. He, H. Wang, K. Sun.Bifurcations and synchronization of fractional-order simplified Lorenz hyperchaotic systems[J].Journal of Applied Analysis & Computation, 2015, 5 (2) : 210-219.
›H. Wang, K. Sun, S. He.Dynamic analysis and DSP implementation of fractional-order Lorenz-Stenflo system based on Adomian decomposition method[J].Physica Scripta, 2015, 90 (1) : 015206.
›Y. Wang, K. Sun, S. He, H. Wang.Dynamics of fractional-order sinusoidally forced simplified Lorenz system and its synchronization[J].European Physical Journal-Special Topics, 2014, 223 (8) : 1591.
›K. Sun, X. Liu, C. Zhu.Dynamics of a strengthened chaotic system and its circuit implementation[J].Chinese Journal of Electronics, 2014, 23 (2) : 353-356.
›K. Sun, Y. Wang, Y. L. Wang.Hyperchaos behaviors and chaos synchronization of two unidirectional coupled simplified Lorenz systems[J].Journal of Central South University, 2014, 21 (3) : 948-955.
›T. Zuo, K. Sun, X. Ai, H. Wang.High-order grid multiscroll chaotic attractors generated by the second-generation current conveyor circuit[J].IEEE Transactions on Circuits and Systems II, 2014, 61 (10) : 818-822.
›X. Ai, K. Sun, S. He.Compound attractors between different chaotic systems[J].Acta physica Sinica, 2014, 63 (4) : 40503-040503.
›S. He, K. Sun, H. Wang.Solution of the fractional-order chaotic system based on Adomian decomposition algorithm and its complexity analysis[J].Acta physica Sinica, 2014, 63 (3) : 030502-72.
›T. Zuo, K. Sun, X. Ai, H. Wang.Grid multi-scroll chaotic circuit based on the second generation current conveyers[J].Acta physica Sinica, 2014, 63 (8) : 2953-2962.
›S. He, K. Sun, C. Zhu.Complexity analyses of multi-wing chaotic systems[J].Chinese Physics B, 2013, 22 (5) : 220-225.
›K. Sun, ADLD. Li-kun, Y. Dong, H. Wang, K. Zhong.Multiple coexisting attractors and hysteresis in the generalized Ueda oscillator[J].Mathematical Problems in Engineering, 2013, 2013 (8) : 1-7.
›K. Sun, S. He, Y. He, L. Yin.Complexity analysis of chaotic pseudo-random sequences based on spectral entropy algorithm[J].Acta physica Sinica, 2013, 62 (1) : 709-712.
›K. Sun, S. He, C. Zhu, Y. He.Analysis of chaotic complexity characteristics based on C0 algorithm[J].Acta Electronica Sinica, 2013, 41 (9) : 1765~1771.
›K. Sun, Y. Wang, C. Zhu.Dynamics and circuit implementation of three simplified chaotic systems[J].Journal of Central South University, 2013, 20 (3) : 663-669.
›K. Sun, X. Liu, C. Zhu, J. C. Sprott.Hyperchaos and hyperchaos control of the sinusoidally forced simplified Lorenz system[J]. Nonlinear Dynamics, 2012, 69 (3) : 1383-1391.
›K. Sun, S. He, L. Yin, ADLD. Li-Kun.Application of FuzzyEn algorithm to the analysis of complexity of chaotic sequence[J].Acta physica Sinica, 2012, 61 (13) : 130507-379.
›K. Sun, S. He, L. Sheng.Complexity analysis of chaotic sequence based on the intensive statistical complexity algorithm[J].Acta physica Sinica, 2011, 60 (2) : 90-96.
›K. Sun, X. Liu, C. Zhu.The 0-1 test algorithm for chaos and its applications[J].Chinese Physics B, 2010, 19 (11) : 200-206.
›K. Sun, J. Yang, J. Ding, L. Sheng.Circuit design and implementation of Lorenz chaotic system with one parameter[J].Acta physica Sinica, 2010, 59 (12) : 8385~8392.
›K. Sun, X. Wang, J. C. Sprott.Bifurcations and chaos in fractional-order simplified Lorenz system[J].International Journal of Bifurcation and Chaos, 2010, 20 (4) : 1209-1219.
›K. Sun, J. C. Sprott.Periodically forced chaotic system with signum nonlinearity[J].International Journal of Bifurcation and Chaos, 2010, 20 (5) : 1499-1507.

›物语诗心[专著],湖南教育出版社,2024
›Solution and Characteristic Analysis of Fractional-Order Chaotic Systems[专著].孙克辉,王会海, 贺少波,Springer and Science Press,2022
›混沌及其信息安全应用[编著],清华大学出版社,2021
›分数阶混沌系统的求解与特性分析[专著].孙克辉,王会海, 贺少波,科学出版社,2020
›混沌保密通信的原理与技术[著作].孙克辉,清华大学出版社,2015
›Applications of Nonlinear Dynamics and Chaos in Engineering[著作].孙克辉,Springer,2012
›综合远程监控技术[著作].孙克辉,中南大学出版社,2010
›Chaos Synchronization and Cryptography for Secure Communications: Applications for Encryption[著作].孙克辉,IGI Global,2010

研究领域主要包括以下3个方面。
1)混沌理论与应用:该方向侧重应用基础研究,主要研究涉及混沌系统的动力学特性,混沌同步机理与同步控制策略,非线性混沌的电路设计与实现,混沌信息加密与保密通信。
2)软件无线电理论与应用:该方向侧重于算法研究,主要涉及软件无线电体系结构,调制解调处理算法,传输系统的安全性能等。
3)智能仪器仪表开发:该方向侧重于应用研究,主要包括传感技术、测量技术、监控技术中的相关电子设备、仪器仪表的开发。
下面列出了一些课题组研究成果--示波器捕获的混沌吸引子相图







›湖南省优秀硕士学位论文(学生:武晨阳)|2024
›湖南省优秀博士学位论文指导教师(学生:彭越兮)|2022
›湖南省优秀硕士学位论文指导教师(学生:徐巧云)|2022
›湖南省优秀硕士学位论文指导教师(学生:陈晨)|2022
›湖南省优秀硕士学位论文指导教师(学生:彭冬)|2021
›湖南省自然科学奖三等奖|2019,孙克辉
›湖南省优秀硕士学位论文指导教师(学生:刘文浩)|2019,刘文浩
›宝钢优秀教师奖|2018
›湖南省优秀硕士学位论文指导教师(学生:艾星星)|2017
›湖南省优秀硕士学位论文指导教师(学生:汪艳)|2016
›湖南省优秀硕士学位论文指导教师(学生:贺少波)|2015
›湖南省优秀硕士学位论文指导教师(学生:刘璇)|2014
›湖南省优秀硕士学位论文指导教师(学生:杨静利)|2013
›湖南省优秀硕士学位论文指导教师(学生:王霞)|2011
›中国电信天翼飞YOUNG奖励金优秀教师奖|2014
›新疆维吾尔自治区优秀支教教师|2011
›中南大学高等教育教学成果二等奖|2010
›对口支援西部高校工作十周年突出贡献个人|2011

›2025年湖南省芙蓉计划教书育人优秀个人;2020~2025爱思唯尔高被引学者;2019年省优秀研究生导师;2019年获省自然科学奖;2018年获宝钢优秀教师奖;2014年获中国电信天翼飞YOUNG优秀教师奖;11次获评省优秀博、硕士学位论文指导教师;2011年对口支援西部高校工作十周年突出贡献个人;2011年度“新疆维吾尔自治区优秀支教教师”;2004中南大学首届师德先进个人。

专业:控制理论与控制工程
专业:工业自动化
专业:应用物理学

中南大学 › 物理学院 › 党委副书记、院长 › 教授 › 现任
中南大学 › 物理与电子学院 › 副书记、院长 › 教授 › 历任
中南大学 › 物理与电子学院 › 副院长 › 教授
中南大学 › 物理学院电子信息系 › 主任 › 教授
中南大学 物理学院 电子信息系 › 副主任/副教授
中南工业大学 物热系 应用物理教研室 › 党支部书记/副主任
中南工业大学 应用物理教研室 › 主任
中南工业大学 实验物理教研室 › 讲师
中南工业大学 物热系办公室 › 主任
中南工业大学 物热系 › 学生政治辅导员

中国科协与教育部“英才计划”物理学科工作委员会委员
中国电子学会 电路与系统分会 混沌与非线性电路专业委员会 副主任
湖南省物理学会副理事长
湖南省量子科技学会副理事长

团队名称: 器件物理与信息系统联合团队
团队介绍: 中南大学-新疆大学跨校合作导师团队 该团队现有博士9人,博导5人,硕导9人。

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›为功十五载对口支援,精准赋能新疆高校物理学创新人才培养的探索与实践,2026-01-20
›以“金课”建设为引领的物理与电子科学类一流专业建设与实践,2022-05-20
›物理学专业拔尖创新人才培养模式的探索与实践,2019-09-02
›基于理工融合的研究生创新人才的培养模式,2019-05-01
›宝钢优秀教师奖,2018-11-29
›中国电信天翼飞YOUNG奖励金优秀教师奖,2014-12-18
›对口支援西部高校工作十周年突出贡献个人,2011-12-30
›新疆维吾尔自治区优秀支教教师,2011-04-18
›《信号与系统》双语教学的改革与实践,2010-05-30
›中南大学师德先进个人,2004-04-06