领域:高端装备制造产业 学校:南京航空航天大学职称:副教授
正系统理论及其在无线网络功率控制、空中交通流量控制中的应用;区间观测器及其在飞行器故障检测与容错控制中的应用;网络化多智能体系统与无人机分布式协作;神经网络与深度学习...
具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com
主持或参与项目十余项,目前正在主持的项目包括国家自然科学基金面上项目,国家自然科学基金青年项目,江苏省自然科学基金青年项目,江苏省双创人才计划等。
共发表SCI论文50余篇,其中在控制领域两个顶级期刊IEEE Transactions on Automatic Control和Automatica上共以第一作者发表论文11篇,以唯一作者出版Springer专著一部《Analysis and Synthesis of Dynamic Systems with Positive Characteristics》。
第一作者期刊论文
[1] J. Shen*, J. Lam. Input-output gain analysis for linear systems on cones. Automatica, 2017, 77: 44–50.
[2] J. Shen*, S. Chen. Stability and L∞-gain analysis for a class of nonlinear positive systems with mixed delays. International Journal of Robust and Nonlinear Control, 2017, 27(1): 39–49.
[3] J. Shen*, J. Lam. On the decay rate of discrete-time linear delay systems with cone invariance. IEEE Transactions on Automatic Control, 2016, DOI: 10.1109/TAC.2016.2610104.
[4] J. Shen*, J. Lam. Some extensions on the bounded real lemma for positive systems. IEEE Transactions on Automatic Control, 2016, DOI: 10.1109/TAC.2016.2606426.
[5] J. Shen*, J. Lam. Stability and performance analysis for positive fractional-order systems with time-varying delays. IEEE Transactions on Automatic Control, 2016, 61(9): 2676–2681.
[6] J. Shen*, J. Lam. Static output-feedback stabilization with optimal L1-gain for positive linear systems. Automatica, 2016, 63: 248–253.
[7] J. Shen*, J. Lam. Containment control of multi-agent systems with unbounded communication delays. International Journal of Systems Science, 2016, 47(9): 2048–2057.
[8] J. Shen, W. X. Zheng*. Positivity and stability of coupled differential-difference equations with time-varying delays. Automatica, 57: 123–127, 2015.
[9] J. Shen, W. X. Zheng*. Stability analysis of linear delay systems with cone invariance. Automatica, 53: 30–36, 2015.
[10] J. Shen*, J. Lam. Improved results on H∞ model reduction for continuous-time linear systems over finite frequency ranges. Automatica, 53: 79–84, 2015
[11] J. Shen, J. Lam*. On static output-feedback stabilization for MIMO positive systems. International Journal of Robust and Nonlinear Control, 25(16): 3154–3162, 2015.
[12] J. Shen*, J. Lam. ℓ∞/L∞-gain analysis for positive linear systems with unbounded time-varying delays. IEEE Transactions on Automatic Control, 60 (3), 857–862, 2015.
[13] J. Shen*, J. Lam. H∞ model reduction for discrete-time positive systems with inhomogeneous initial conditions. International Journal of Robust and Nonlinear Control, 25 (1): 88–102, 2015.
[14] J. Shen*, J. Lam. On ℓ∞ and L∞ gains for positive systems with bounded time-varying delays. International Journal of Systems Science, 46(11): 1953–1960, 2015.
[15] J. Shen*, J. Lam. Non-existence of finite-time stable equilibria in fractional-order nonlinear systems. Automatica, 50(2): 547–551, 2014.
[16] J. Shen*, J. Lam. L∞-gain analysis for positive systems with distributed delays. Automatica, 50(1): 175–179, 2014.
[17] J. Shen*, J. Lam. H∞ model reduction for positive fractional order systems. Asian Journal of Control, 16(2): 441–450, 2014.
[18] J. Shen*, J. Lam. State feedback H∞ control of commensurate fractional-order systems. International Journal of Systems Science, 45(3): 363–372, 2014.
[19] J. Shen, J. Cao*. Consensus of multi-agent systems on time scales. IMA Journal of Mathematical Control and Information, 29(4): 507–517, 2012.
[20] J. Shen, J. Cao*. Necessary and sufficient conditions for consensus of delayed fractional-order systems. Asian Journal of Control, 14(6): 1690–1697, 2012.
[21] J. Shen, J. Cao*, J. Lu. Consensus of fractional-order systems with nonuniform input and communication delays. Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering, 226(2): 271–283, 2012.
[22] J. Shen, J. Cao*. Finite-time synchronization of coupled neural networks via discontinuous controllers. Cognitive Neurodynamics, 5(4): 373–385, 2011.
更多论文及专著更新请见Google Scholar Citations和Researchgate
Google Scholar Citations: https://scholar.google.com.hk/citations?user=Hhj0RtYAAAAJ&hl=zh-CN
Researchgate: https://www.researchgate.net/profile/Jun_Shen17