| 2013 | ||
|---|---|---|
| j35 | Aneel Tanwani, Hyungbo Shim, Daniel Liberzon: Observability for Switched Linear Systems: Characterization and Observer Design. IEEE Trans. Automat. Contr. 58(4): 891-904 (2013) | |
| c21 | Daniel Liberzon: Limited-information control of hybrid systems via reachable set propagation. HSCC 2013: 11-20 | |
| 2012 | ||
| j34 | Daniel Liberzon, Stephan Trenn: Switched nonlinear differential algebraic equations: Solution theory, Lyapunov functions, and stability. Automatica 48(5): 954-963 (2012) | |
| j33 | Matthias Albrecht Müller, Daniel Liberzon: Input/output-to-state stability and state-norm estimators for switched nonlinear systems. Automatica 48(9): 2029-2039 (2012) | |
| j32 | Andrei A. Agrachev, Yuliy Baryshnikov, Daniel Liberzon: On robust Lie-algebraic stability conditions for switched linear systems. Systems & Control Letters 61(2): 347-353 (2012) | |
| j31 | Jingjin Yu, Steven M. LaValle, Daniel Liberzon: Rendezvous Without Coordinates. IEEE Trans. Automat. Contr. 57(2): 421-434 (2012) | |
| j30 | Yoav Sharon, Daniel Liberzon: Input to State Stabilizing Controller for Systems With Coarse Quantization. IEEE Trans. Automat. Contr. 57(4): 830-844 (2012) | |
| c20 | Matthias Albrecht Müller, Daniel Liberzon, Frank Allgöwer: Relaxed conditions for norm-controllability of nonlinear systems. CDC 2012: 314-319 | |
| c19 | Daniel Liberzon, Dragan Nesic, Andrew R. Teel: Small-gain theorems of LaSalle type for hybrid systems. CDC 2012: 6825-6830 | |
| 2011 | ||
| j29 | Debasish Chatterjee, Daniel Liberzon: Stabilizing Randomly Switched Systems. SIAM J. Control and Optimization 49(5): 2008-2031 (2011) | |
| j28 | Linh Vu, Daniel Liberzon: Supervisory Control of Uncertain Linear Time-Varying Systems. IEEE Trans. Automat. Contr. 56(1): 27-42 (2011) | |
| j27 | Aneel Tanwani, Alejandro D. Domínguez-García, Daniel Liberzon: An Inversion-Based Approach to Fault Detection and Isolation in Switching Electrical Networks. IEEE Trans. Contr. Sys. Techn. 19(5): 1059-1074 (2011) | |
| c18 | Daniel Liberzon, Stephan Trenn, Fabian Wirth: Commutativity and asymptotic stability for linear switched DAEs. CDC-ECE 2011: 417-422 | |
| c17 | Aneel Tanwani, Daniel Liberzon: Robust invertibility of switched linear systems. CDC-ECE 2011: 441-446 | |
| c16 | Matthias Albrecht Müller, Daniel Liberzon, Frank Allgöwer: On norm-controllability of nonlinear systems. CDC-ECE 2011: 1741-1746 | |
| c15 | Daniel Liberzon: Stabilizing a switched linear system by sampled-data quantized feedback. CDC-ECE 2011: 8321-8326 | |
| c14 | Aneel Tanwani, Hyungbo Shim, Daniel Liberzon: Observability implies observer design for switched linear systems. HSCC 2011: 3-12 | |
| 2010 | ||
| j26 | Aneel Tanwani, Daniel Liberzon: Invertibility of switched nonlinear systems. Automatica 46(12): 1962-1973 (2010) | |
| c13 | Andrei A. Agrachev, Yuliy Baryshnikov, Daniel Liberzon: Towards robust Lie-algebraic stability conditions for switched linear systems. CDC 2010: 408-413 | |
| c12 | ||
| c11 | Matthias Albrecht Müller, Daniel Liberzon: State-norm estimators for switched nonlinear systems under average dwell-time. CDC 2010: 1275-1280 | |
| c10 | Yoav Sharon, Daniel Liberzon, Yi Ma: Adaptive control using quantized measurements with application to vision-only landing control. CDC 2010: 2511-2516 | |
| 2009 | ||
| j25 | Dragan Nesic, Daniel Liberzon: A Unified Framework for Design and Analysis of Networked and Quantized Control Systems. IEEE Trans. Automat. Contr. 54(4): 732-747 (2009) | |
| c9 | Daniel Liberzon, Stephan Trenn: On stability of linear switched differential algebraic equations. CDC 2009: 2156-2161 | |
| c8 | Hyungbo Shim, Daniel Liberzon, Jung-Su Kim: Quasi-ISS reduced-order observers and quantized output feedback. CDC 2009: 6680-6685 | |
| 2008 | ||
| j24 | Linh Vu, Daniel Liberzon: Invertibility of switched linear systems. Automatica 44(4): 949-958 (2008) | |
| j23 | João Pedro Hespanha, Daniel Liberzon, Andrew R. Teel: Lyapunov conditions for input-to-state stability of impulsive systems. Automatica 44(11): 2735-2744 (2008) | |
| j22 | Sayan Mitra, Daniel Liberzon, Nancy A. Lynch: Verifying average dwell time of hybrid systems. ACM Trans. Embedded Comput. Syst. 8(1) (2008) | |
| c7 | ||
| c6 | ||
| c5 | ||
| c4 | Yoav Sharon, Daniel Liberzon: Input-to-State Stabilization with Quantized Output Feedback. HSCC 2008: 500-513 | |
| 2007 | ||
| j21 | Linh Vu, Debasish Chatterjee, Daniel Liberzon: Input-to-state stability of switched systems and switching adaptive control. Automatica 43(4): 639-646 (2007) | |
| j20 | Daniel Liberzon, Dragan Nesic: Input-to-State Stabilization of Linear Systems With Quantized State Measurements. IEEE Trans. Automat. Contr. 52(5): 767-781 (2007) | |
| j19 | Debasish Chatterjee, Daniel Liberzon: On Stability of Randomly Switched Nonlinear Systems. IEEE Trans. Automat. Contr. 52(12): 2390-2394 (2007) | |
| 2006 | ||
| j18 | Michael Margaliot, Daniel Liberzon: Lie-algebraic stability conditions for nonlinear switched systems and differential inclusions. Systems & Control Letters 55(1): 8-16 (2006) | |
| j17 | Debasish Chatterjee, Daniel Liberzon: Stability analysis of deterministic and stochastic switched systems via a comparison principle and multiple Lyapunov functions. SIAM J. Control and Optimization 45(1): 174-206 (2006) | |
| j16 | Francesco Bullo, Daniel Liberzon: Quantized control via locational optimization. IEEE Trans. Automat. Contr. 51(1): 2-13 (2006) | |
| j15 | Daniel Liberzon: Quantization, time delays, and nonlinear stabilization. IEEE Trans. Automat. Contr. 51(7): 1190-1195 (2006) | |
| c3 | Daniel Liberzon, Dragan Nesic: Stability Analysis of Hybrid Systems Via Small-Gain Theorems. HSCC 2006: 421-435 | |
| c2 | Sayan Mitra, Nancy A. Lynch, Daniel Liberzon: Verifying Average Dwell Time by Solving Optimization Problems. HSCC 2006: 476-490 | |
| 2005 | ||
| j14 | Daniel Liberzon: Liapunov functions and stability in control theory, second ed., : A. Bacciotti, L. Rosier; Springer, Berlin, 2005, ISBN: 3-540-21332-5. Automatica 41(12): 2183-2184 (2005) | |
| j13 | Linh Vu, Daniel Liberzon: Common Lyapunov functions for families of commuting nonlinear systems. Systems & Control Letters 54(5): 405-416 (2005) | |
| j12 | João P. Hespanha, Daniel Liberzon, David Angeli, Eduardo D. Sontag: Nonlinear norm-observability notions and stability of switched systems. IEEE Trans. Automat. Contr. 50(2): 154-168 (2005) | |
| j11 | Daniel Liberzon, João P. Hespanha: Stabilization of nonlinear systems with limited information feedback. IEEE Trans. Automat. Contr. 50(6): 910-915 (2005) | |
| p1 | ||
| 2004 | ||
| j10 | Daniel Liberzon: Output-input stability implies feedback stabilization. Systems & Control Letters 53(3-4): 237-248 (2004) | |
| j9 | Daniel Liberzon, Roberto Tempo: Common Lyapunov functions and gradient algorithms. IEEE Trans. Automat. Contr. 49(6): 990-994 (2004) | |
| 2003 | ||
| j8 | João P. Hespanha, Daniel Liberzon, A. Stephen Morse: Hysteresis-based switching algorithms for supervisory control of uncertain systems. Automatica 39(2): 263-272 (2003) | |
| j7 | Daniel Liberzon: Qualitative theory of hybrid dynamical systems: A.S. Matveev and A.V. Savkin; Birkhäuser, Boston, 2000, ISBN: 0-8176-4141-6. Automatica 39(2): 368-369 (2003) | |
| j6 | Daniel Liberzon: Hybrid feedback stabilization of systems with quantized signals. Automatica 39(9): 1543-1554 (2003) | |
| j5 | Daniel Liberzon: On stabilization of linear systems with limited information. IEEE Trans. Automat. Contr. 48(2): 304-307 (2003) | |
| 2002 | ||
| j4 | João P. Hespanha, Daniel Liberzon, A. Stephen Morse: Supervision of integral-input-to-state stabilizing controllers. Automatica 38(8): 1327-1335 (2002) | |
| j3 | Daniel Liberzon, A. Stephen Morse, Eduardo D. Sontag: Output-input stability and minimum-phase nonlinear systems. IEEE Trans. Automat. Contr. 47(3): 422-436 (2002) | |
| 2001 | ||
| j2 | Andrei A. Agrachev, Daniel Liberzon: Lie-Algebraic Stability Criteria for Switched Systems. SIAM J. Control and Optimization 40(1): 253-269 (2001) | |
| 2000 | ||
| j1 | Daniel Liberzon, Roger W. Brockett: Spectral Analysis of Fokker--Planck and Related Operators Arising From Linear Stochastic Differential Equations. SIAM J. Control and Optimization 38(5): 1453-1467 (2000) | |
| c1 | ||
Colors in the list of coauthors
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