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| 2012 | ||
|---|---|---|
| 66 | Tengfei Liu, Zhong-Ping Jiang, David J. Hill: A sector bound approach to feedback control of nonlinear systems with state quantization. Automatica 48(1): 145-152 (2012) | |
| 65 | Huawen Ye, Zhong-Ping Jiang, Weihua Gui, Chunhua Yang: Decentralized stabilization of large-scale feedforward systems using saturated delayed controls. Automatica 48(1): 89-94 (2012) | |
| 64 | Iasson Karafyllis, Zhong-Ping Jiang: Global stabilization of nonlinear systems based on vector control lyapunov functions CoRR abs/1201.2478: (2012) | |
| 63 | Tengfei Liu, Zhong-Ping Jiang, David J. Hill: Small-Gain Based Output-Feedback Controller Design for a Class of Nonlinear Systems With Actuator Dynamic Quantization. IEEE Trans. Automat. Contr. 57(5): 1326-1332 (2012) | |
| 62 | Sergey Dashkovskiy, Zhong-Ping Jiang, Björn Sebastian Rüffer: Special issue on robust stability and control of large-scale nonlinear systems. MCSS 24(1-2): 1-2 (2012) | |
| 61 | Tengfei Liu, Zhong-Ping Jiang, David J. Hill: Quantized stabilization of strict-feedback nonlinear systems based on ISS cyclic-small-gain theorem. MCSS 24(1-2): 75-110 (2012) | |
| 60 | Tengfei Liu, David J. Hill, Zhong-Ping Jiang: Lyapunov formulation of the large-scale, ISS cyclic-small-gain theorem: The discrete-time case. Systems & Control Letters 61(1): 266-272 (2012) | |
| 2011 | ||
| 59 | Yu Jiang, Zhong-Ping Jiang: Robust approximate dynamic programming and global stabilization with nonlinear dynamic uncertainties. CDC-ECE 2011: 115-120 | |
| 58 | Tengfei Liu, Zhong-Ping Jiang, David J. Hill: Robust control of nonlinear strict-feedback systems with measurement errors. CDC-ECE 2011: 2034-2039 | |
| 57 | Yu Jiang, Srinivasa Chemudupati, Jan Morup Jorgensen, Zhong-Ping Jiang, Charles S. Peskin: Optimal control mechanism involving the human kidney. CDC-ECE 2011: 3688-3693 | |
| 56 | Tengfei Liu, David J. Hill, Zhong-Ping Jiang: Lyapunov formulation of ISS cyclic-small-gain in continuous-time dynamical networks. Automatica 47(9): 2088-2093 (2011) | |
| 55 | Iasson Karafyllis, Zhong-Ping Jiang: A Short Note for the Robustness Properties of Hybrid Dead-Beat Observers CoRR abs/1102.3776: (2011) | |
| 54 | Yu Jiang, Zhong-Ping Jiang: Approximate Dynamic Programming for Optimal Stationary Control With Control-Dependent Noise. IEEE Transactions on Neural Networks 22(12): 2392-2398 (2011) | |
| 53 | Iasson Karafyllis, Zhong-Ping Jiang: A vector small-gain theorem for general non-linear control systems. IMA J. Math. Control & Information 28(3): 309-344 (2011) | |
| 52 | Iasson Karafyllis, Zhong-Ping Jiang: Hybrid dead-beat observers for a class of nonlinear systems. Systems & Control Letters 60(8): 608-617 (2011) | |
| 2010 | ||
| 51 | Iasson Karafyllis, Zhong-Ping Jiang, George Athanasiou: Nash equilibrium and robust stability in dynamic games: A small-gain perspective. CDC 2010: 7425-7430 | |
| 50 | Hiroshi Ito, Pierdomenico Pepe, Zhong-Ping Jiang: A small-gain condition for iISS of interconnected retarded systems based on Lyapunov-Krasovskii functionals. Automatica 46(10): 1646-1656 (2010) | |
| 49 | Iasson Karafyllis, Zhong-Ping Jiang, George Athanasiou: Nash equilibrium and robust stability in dynamic games: A small-gain perspective. Computers & Mathematics with Applications 60(11): 2936-2952 (2010) | |
| 48 | Yiguang Hong, Zhong-Ping Jiang, Gang Feng: Finite-Time Input-to-State Stability and Applications to Finite-Time Control Design. SIAM J. Control and Optimization 48(7): 4395-4418 (2010) | |
| 2009 | ||
| 47 | Hiroshi Ito, Pierdomenico Pepe, Zhong-Ping Jiang: Construction of Lyapunov-Krasovskii functionals for interconnection of retarded dynamic and static systems via a small-gain condition. CDC 2009: 1310-1316 | |
| 46 | Junchan Zhao, Qin Li, Junan Lu, Zhong-Ping Jiang: Robust synchronization of weighted complex dynamical networks. CDC 2009: 1708-1713 | |
| 45 | Qin Li, Zhong-Ping Jiang: Pattern preserving path following of unicycle teams with communication delays. CDC 2009: 3051-3056 | |
| 44 | Zhichun Yang, Yiguang Hong, Zhong-Ping Jiang, Xiaoli Wang: Quantized feedback stabilization of hybrid impulsive control systems. CDC 2009: 3903-3908 | |
| 43 | Tengfei Liu, David J. Hill, Zhong-Ping Jiang: Lyapunov formulation of ISS small-gain in dynamical networks. CDC 2009: 4204-4209 | |
| 42 | Shanaz Tiwari, Yuan Wang, Zhong-Ping Jiang: A nonlinear small-gain theorem for large-scale time delay systems. CDC 2009: 7204-7209 | |
| 41 | Frédéric Mazenc, Zhong-Ping Jiang: Time-varying control laws with guaranteed persistence for a class of multi-species chemostats. CDC 2009: 7710-7715 | |
| 40 | Iasson Karafyllis, Zhong-Ping Jiang: A vector Small-Gain Theorem for general nonlinear control systems. CDC 2009: 7996-8001 | |
| 39 | Davide Buccieri, Damien Perritaz, Philippe Müllhaupt, Zhong-Ping Jiang, Dominique Bonvin: Velocity-Scheduling Control for a Unicycle Mobile Robot: Theory and Experiments. IEEE Transactions on Robotics 25(2): 451-458 (2009) | |
| 38 | Iasson Karafyllis, Zhong-Ping Jiang: Stability and control of nonlinear systems described by retarded functional equations: a review of recent results. Science in China Series F: Information Sciences 52(11): 2104-2126 (2009) | |
| 2008 | ||
| 37 | Hiroshi Ito, Pierdomenico Pepe, Zhong-Ping Jiang: A small-gain condition for integral input-to-state stability of interconnected retarded nonlinear systems. CDC 2008: 19-24 | |
| 36 | Qin Li, Zhong-Ping Jiang: Formation tracking control of unicycle teams with collision avoidance. CDC 2008: 496-501 | |
| 35 | Iasson Karafyllis, Zhong-Ping Jiang: Control Lyapunov Functionals and robust stabilization of nonlinear time-delay systems. CDC 2008: 5312-5317 | |
| 34 | Shu-Jun Liu, Zhong-Ping Jiang, Ji-Feng Zhang: Global output-feedback stabilization for a class of stochastic non-minimum-phase nonlinear systems. Automatica 44(8): 1944-1957 (2008) | |
| 33 | Bo Yang, Yanyan Shen, Gang Feng, Chengnian Long, Zhong-Ping Jiang, Xinping Guan: Distributed power control and random access for spectrum sharing with QoS constraint. Computer Communications 31(17): 4089-4097 (2008) | |
| 2007 | ||
| 32 | Bohou Xu, Zhong-Ping Jiang, Xingxing Wu, Daniel W. Repperger: Nonlinear Bistable Stochastic Resonance Filters for Image Processing. ICASSP (1) 2007: 717-720 | |
| 31 | Hao Zhang, Zhong-Ping Jiang: Mobility Sensitive Broadcast Algorithms in Highly Mobile Ad Hoc Networks. Ad Hoc & Sensor Wireless Networks 3(2-3): 171-196 (2007) | |
| 30 | Shu-Jun Liu, Ji-Feng Zhang, Zhong-Ping Jiang: Decentralized adaptive output-feedback stabilization for large-scale stochastic nonlinear systems. Automatica 43(2): 238-251 (2007) | |
| 29 | Iasson Karafyllis, Zhong-Ping Jiang: A Small-Gain Theorem for a Wide Class of Feedback Systems with Control Applications. SIAM J. Control and Optimization 46(4): 1483-1517 (2007) | |
| 2006 | ||
| 28 | Hao Zhang, Harsha Nagesh, Zhong-Ping Jiang: Pilot power minimization with coverage and locatability constraints in CDMA systems. IEEE Communications Letters 10(3): 174-176 (2006) | |
| 27 | Hao Zhang, Zhong-Ping Jiang: Modeling and performance analysis of ad hoc broadcasting schemes. Perform. Eval. 63(12): 1196-1215 (2006) | |
| 26 | Zhong-Ping Jiang, Iven M. Y. Mareels: New Trends in Nonlinear Control. Systems & Control Letters 55(8): 623 (2006) | |
| 25 | Yi Fan, Zhong-Ping Jiang, Hao Zhang: Network flow control under capacity constraints: A case study. Systems & Control Letters 55(8): 681-688 (2006) | |
| 2005 | ||
| 24 | Hao Zhang, Zhong-Ping Jiang: On Reducing Broadcast Expenses in Ad Hoc Route Discovery. ICDCS Workshops 2005: 946-952 | |
| 23 | Yi Fan, Zhong-Ping Jiang, Shivendra S. Panwar, Hao Zhang: Nonlinear output feedback control of TCP/AQM networks. ISCAS (3) 2005: 2072-2075 | |
| 22 | Dimitrios Karagiannis, Zhong-Ping Jiang, Romeo Ortega, Alessandro Astolfi: Output-feedback stabilization of a class of uncertain non-minimum-phase nonlinear systems. Automatica 41(9): 1609-1615 (2005) | |
| 21 | Yi Fan, Zhong-Ping Jiang, Xingxing Wu: A control theoretic approach to stabilizing queues in large-scale networks. IEEE Communications Letters 9(10): 951-953 (2005) | |
| 20 | K. D. Do, Zhong-Ping Jiang, J. Pan: Global partial-state feedback and output-feedback tracking controllers for underactuated ships. Systems & Control Letters 54(10): 1015-1036 (2005) | |
| 2004 | ||
| 19 | Zairong Xi, Gang Feng, Zhong-Ping Jiang, Daizhan Cheng: On output feedback stabilization of uncertain chained systems. ICARCV 2004: 1182-1187 | |
| 18 | Zhong-Ping Jiang: Recent developments in decentralized nonlinear control. ICARCV 2004: 326-331 | |
| 17 | K. D. Do, Zhong-Ping Jiang, J. Pan, Henk Nijmeijer: A global output-feedback controller for stabilization and tracking of underactuated ODIN: A spherical underwater vehicle. Automatica 40(1): 117-124 (2004) | |
| 16 | Zhong-Ping Jiang, Yuandan Lin, Yuan Wang: Nonlinear small-gain theorems for discrete-time feedback systems and applications. Automatica 40(12): 2129-2136 (2004) | |
| 15 | K. D. Do, Zhong-Ping Jiang, J. Pan: Robust adaptive path following of underactuated ships. Automatica 40(6): 929-944 (2004) | |
| 14 | Hiroshi Ito, Zhong-Ping Jiang: Robust disturbance attenuation of nonlinear systems using output feedback and state-dependent scaling. Automatica 40(9): 1621-1628 (2004) | |
| 13 | Hao Zhang, Zhong-Ping Jiang: Performance analysis of broadcasting schemes in mobile ad hoc networks. IEEE Communications Letters 8(12): 718-720 (2004) | |
| 12 | Khac Duc Do, Zhong-Ping Jiang, Jie Pan: A global output-feedback controller for simultaneous tracking and stabilization of unicycle-type mobile robots. IEEE Transactions on Robotics 20(3): 589-594 (2004) | |
| 11 | Laurent Praly, Zhong-Ping Jiang: Linear output feedback with dynamic high gain for nonlinear systems. Systems & Control Letters 53(2): 107-116 (2004) | |
| 2002 | ||
| 10 | Zhong-Ping Jiang: Global tracking control of underactuated ships by Lyapunov's direct method. Automatica 38(2): 301-309 (2002) | |
| 9 | Zhong-Ping Jiang: Decentralized disturbance attenuating output-feedback trackers for large-scale nonlinear systems. Automatica 38(8): 1407-1415 (2002) | |
| 2001 | ||
| 8 | Zhong-Ping Jiang, Yuan Wang: Input-to-state stability for discrete-time nonlinear systems. Automatica 37(6): 857-869 (2001) | |
| 2000 | ||
| 7 | Zhong-Ping Jiang: Robust exponential regulation of nonholonomic systems with uncertainties. Automatica 36(2): 189-209 (2000) | |
| 6 | Youping Zhang, Pei-Yaun Peng, Zhong-Ping Jiang: Stable neural controller design for unknown nonlinear systems using backstepping. IEEE Trans. Neural Netw. Learning Syst. 11(6): 1347-1360 (2000) | |
| 1999 | ||
| 5 | Zhong-Ping Jiang: A combined backstepping and small-gain approach to adaptive output feedback control. Automatica 35(6): 1131-1139 (1999) | |
| 1998 | ||
| 4 | Zhong-Ping Jiang, Laurent Praly: Design of Robust Adaptive Controllers for Nonlinear Systems with Dynamic Uncertainties. Automatica 34(7): 825-840 (1998) | |
| 3 | Zhong-Ping Jiang, David J. Hill, Yi Guo: Stabilization and Tracking via Output Feedback for the Nonlinear Benchmark System. Automatica 34(7): 907-915 (1998) | |
| 1997 | ||
| 2 | Zhong-Ping Jiang, Henk Nijmeijer: Tracking Control of Mobile Robots: A Case Study in Backstepping. Automatica 33(7): 1393-1399 (1997) | |
| 1996 | ||
| 1 | Zhong-Ping Jiang, Iven M. Y. Mareels, Yuan Wang: A Lyapunov formulation of the nonlinear small-gain theorem for interconnected ISS systems. Automatica 32(8): 1211-1215 (1996) | |
Colors in the list of coauthors
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