 | 2012 |
| 24 |  | Iasson Karafyllis,
Zhong-Ping Jiang:
Global stabilization of nonlinear systems based on vector control lyapunov functions
CoRR abs/1201.2478: (2012) |
| 23 |  | Iasson Karafyllis,
Miroslav Krstic:
Nonlinear Stabilization Under Sampled and Delayed Measurements, and With Inputs Subject to Delay and Zero-Order Hold.
IEEE Trans. Automat. Contr. 57(5): 1141-1154 (2012) |
| 2011 |
| 22 |  | Iasson Karafyllis,
Miroslav Krstic:
Nonlinear stabilization under sampled and delayed measurements, and with inputs subject to delay and zero-order hold.
CDC-ECE 2011: 7581-7586 |
| 21 |  | Iasson Karafyllis,
Zhong-Ping Jiang:
A Short Note for the Robustness Properties of Hybrid Dead-Beat Observers
CoRR abs/1102.3776: (2011) |
| 20 |  | Iasson Karafyllis,
Miroslav Krstic:
Global stabilization of feedforward systems under perturbations in sampling schedule
CoRR abs/1104.3131: (2011) |
| 19 |  | Iasson Karafyllis,
Miroslav Krstic:
Predictor-Based Output Feedback for Nonlinear Delay Systems
CoRR abs/1108.4499: (2011) |
| 18 |  | Iasson Karafyllis,
Costas Kravaris:
Global Exponential Observers for Two Classes of Nonlinear Systems
CoRR abs/1111.0794: (2011) |
| 17 |  | 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) |
| 16 |  | Iasson Karafyllis:
Stabilization by Means of Approximate Predictors for Systems with Delayed Input.
SIAM J. Control and Optimization 49(3): 1100-1123 (2011) |
| 15 |  | Iasson Karafyllis,
Zhong-Ping Jiang:
Hybrid dead-beat observers for a class of nonlinear systems.
Systems & Control Letters 60(8): 608-617 (2011) |
| 2010 |
| 14 |  | Iasson Karafyllis,
Zhong-Ping Jiang,
George Athanasiou:
Nash equilibrium and robust stability in dynamic games: A small-gain perspective.
CDC 2010: 7425-7430 |
| 13 |  | 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) |
| 2009 |
| 12 |  | Iasson Karafyllis,
Zhong-Ping Jiang:
A vector Small-Gain Theorem for general nonlinear control systems.
CDC 2009: 7996-8001 |
| 11 |  | 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 |
| 10 |  | Iasson Karafyllis,
Zhong-Ping Jiang:
Control Lyapunov Functionals and robust stabilization of nonlinear time-delay systems.
CDC 2008: 5312-5317 |
| 9 |  | Iasson Karafyllis,
Costas Kravaris:
From continuous-time design to sampled-data design of nonlinear observers.
CDC 2008: 5408-5413 |
| 8 |  | Iasson Karafyllis:
Robust global stabilization by means of discrete-delay output feedback.
Systems & Control Letters 57(12): 987-995 (2008) |
| 7 |  | Iasson Karafyllis,
Costas Kravaris:
Nonuniform in time state estimation of dynamic systems.
Systems & Control Letters 57(9): 714-725 (2008) |
| 2007 |
| 6 |  | 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 |
| 5 |  | Iasson Karafyllis:
Non-uniform robust global asymptotic stability for discrete-time systems and applications to numerical analysis.
IMA J. Math. Control & Information 23(1): 11-41 (2006) |
| 4 |  | Iasson Karafyllis:
Finite-Time Global Stabilization by Means of Time-Varying Distributed Delay Feedback.
SIAM J. Control and Optimization 45(1): 320-342 (2006) |
| 2005 |
| 3 |  | Iasson Karafyllis,
Costas Kravaris:
Robust output feedback stabilization and nonlinear observer design.
Systems & Control Letters 54(10): 925-938 (2005) |
| 2 |  | Iasson Karafyllis:
Applications of non-uniform in time robust global asymptotic output stability to robust partial state feedback stabilization.
Systems & Control Letters 54(10): 939-951 (2005) |
| 1 |  | Iasson Karafyllis:
Non-uniform in time robust global asymptotic output stability.
Systems & Control Letters 54(3): 181-193 (2005) |