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Tingshu Hu
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2020 – today
- 2021
- [c58]Xia He, Tingshu Hu, Jie Hua, Chunmei Wang, Long Hong:
A Logic Study of NL Fuzzy Degree. ISKE 2021: 58-62 - 2020
- [i1]Mohammad Tahan, Tingshu Hu:
Multiple string LED driver with flexible and high performance PWM dimming control. CoRR abs/2002.00029 (2020)
2010 – 2019
- 2018
- [c57]Mohammad Tahan, David Bamgboje, Tingshu Hu:
Hybrid control system in an efficient LED driver. ACC 2018: 6772-6777 - 2016
- [c56]Haifeng Wang, Mohammad Tahan, Tingshu Hu:
Effects of rest time on equivalent circuit model for a li-ion battery. ACC 2016: 3101-3106 - 2014
- [c55]Fidegnon Fassinou, Haifeng Wang, Lalitha Devarakonda, Tingshu Hu:
Observer-based method for reduction of dc-link voltage ripple in two-stage boost inverters. ACC 2014: 4348-4353 - [c54]Lalitha Devarakonda, Haifeng Wang, Tingshu Hu:
Parameter identification of circuit models for lead-acid batteries under non-zero initial conditions. ACC 2014: 4360-4365 - 2013
- [j37]Huong Pham, Hoeguk Jung, Tingshu Hu:
State-Space Approach to Modeling and Ripple Reduction in AC-DC Converters. IEEE Trans. Control. Syst. Technol. 21(5): 1949-1955 (2013) - [c53]Hoeguk Jung, Christian Conficoni, Andrea Tilli, Tingshu Hu:
Modeling and control design for power systems driven by battery/supercapacitor hybrid energy storage devices. ACC 2013: 4283-4288 - 2012
- [c52]Huong Pham, Hoeguk Jung, Tingshu Hu:
Ripple reduction in AC-DC power converters via a Lyapunov approach. ACC 2012: 2141-2146 - 2011
- [j36]Tingshu Hu, Hoeguk Jung:
Estimation of Magnitude of Self-Induced Oscillations via Piecewise Quadratic Lyapunov Functions. IEEE Trans. Circuits Syst. I Regul. Pap. 58-I(12): 2872-2881 (2011) - [c51]Tingshu Hu, Brian Zanchi, Jianping Zhao:
Determining battery parameters by simple algebraic method. ACC 2011: 3090-3095 - [c50]Yao Yao, Fidegnon Fassinou, Tingshu Hu:
Stability and robust regulation of battery driven boost converter with simple feedback. ACC 2011: 4554-4559 - [c49]Hoeguk Jung, Tingshu Hu:
Bounding self-induced oscillations via invariant level sets of piecewise quadratic Lyapunov functions. ACC 2011: 5121-5126 - 2010
- [j35]Tingshu Hu, Franco Blanchini:
Non-conservative matrix inequality conditions for stability/stabilizability of linear differential inclusions. Autom. 46(1): 190-196 (2010) - [j34]Tingshu Hu, Thomas Thibodeau, Andrew R. Teel:
A Unified Lyapunov Approach to Analysis of Oscillations and Stability for Systems With Piecewise Linear Elements. IEEE Trans. Autom. Control. 55(12): 2864-2869 (2010) - [c48]Dan Dai, Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Output feedback synthesis for sampled-data system with input saturation. ACC 2010: 1797-1802
2000 – 2009
- 2009
- [j33]Thomas Thibodeau, Wenchan Tong, Tingshu Hu:
Set invariance and performance analysis of linear systems via truncated ellipsoids. Autom. 45(9): 2046-2051 (2009) - [j32]Dan Dai, Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Output feedback design for saturated linear plants using deadzone loops. Autom. 45(12): 2917-2924 (2009) - [j31]Marco Massimetti, Luca Zaccarian, Tingshu Hu, Andrew R. Teel:
Linear discrete-time global and regional anti-windup: an LMI approach. Int. J. Control 82(12): 2179-2192 (2009) - [j30]Dan Dai, Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Piecewise-quadratic Lyapunov functions for systems with deadzones or saturations. Syst. Control. Lett. 58(5): 365-371 (2009) - [c47]Thomas Thibodeau, Tingshu Hu:
Analysis of linear systems using truncated ellipsoids. ACC 2009: 1219-1224 - [c46]Tingshu Hu, Thomas Thibodeau, Andrew R. Teel:
Analysis of oscillation and stability for systems with piecewise linear components via saturation functions. ACC 2009: 1911-1916 - 2008
- [j29]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Anti-windup synthesis for linear control systems with input saturation: Achieving regional, nonlinear performance. Autom. 44(2): 512-519 (2008) - [j28]Tingshu Hu, Liqiang Ma, Zongli Lin:
Stabilization of Switched Systems via Composite Quadratic Functions. IEEE Trans. Autom. Control. 53(11): 2571-2585 (2008) - [c45]Wenchan Tong, Tingshu Hu:
Improving performance analysis with structures of outputs and constraints. ACC 2008: 1092-1097 - [c44]Dan Dai, Ricardo G. Sanfelice, Tingshu Hu, Andrew R. Teel:
Analysis of hybrid systems resulting from relay-type hysteresis and saturation: A Lyapunov approach. CDC 2008: 2764-2769 - [c43]Tingshu Hu:
Nonlinear feedback laws for practical stabilization of systems with input and state constraints. CDC 2008: 3481-3486 - [c42]Tingshu Hu, Franco Blanchini:
Polyhedral functions, composite quadratic functions, and equivalent conditions for stability/stabilization. CDC 2008: 5432-5437 - 2007
- [j27]Tingshu Hu:
Nonlinear control design for linear differential inclusions via convex hull of quadratics. Autom. 43(4): 685-692 (2007) - [j26]Tingshu Hu, Andrew R. Teel:
Characterization of Forced Vibration for Difference Inclusions: A Lyapunov Approach. IEEE Trans. Circuits Syst. I Regul. Pap. 54-I(6): 1367-1379 (2007) - [c41]Tingshu Hu:
Switching Law Construction for Discrete-Time Systems Via Composite Quadratic Functions. ACC 2007: 675-680 - [c40]Tingshu Hu, Liqiang Ma, Zongli Lin:
Active Vibration Control for Uncertain Time-Varying Systems Via Output Feedback. ACC 2007: 5583-5588 - [c39]Dan Dai, Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Analysis of systems with saturation/deadzone via piecewise-quadratic Lyapunov functions. ACC 2007: 5822-5827 - 2006
- [j25]Rafal Goebel, Andrew R. Teel, Tingshu Hu, Zongli Lin:
Conjugate convex Lyapunov functions for dual linear differential inclusions. IEEE Trans. Autom. Control. 51(4): 661-666 (2006) - [j24]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Stability and Performance for Saturated Systems via Quadratic and Nonquadratic Lyapunov Functions. IEEE Trans. Autom. Control. 51(11): 1770-1786 (2006) - [c38]Dan Dai, Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Control of saturated linear plants via output feedback containing an internal deadzone loop. ACC 2006: 1-6 - [c37]Tingshu Hu, Liqiang Ma, Zongli Lin:
On Several Composite Quadratic Lyapunov Functions for Switched Systems. CDC 2006: 113-118 - [c36]Marco Massimetti, Luca Zaccarian, Tingshu Hu, Andrew R. Teel:
LMI-based linear anti-windup for discrete time linear control systems. CDC 2006: 6173-6178 - 2005
- [j23]Tingshu Hu, Andrew R. Teel, Zongli Lin:
Lyapunov characterization of forced oscillations. Autom. 41(10): 1723-1735 (2005) - [j22]Tingshu Hu, Rafal Goebel, Andrew R. Teel, Zongli Lin:
Conjugate Lyapunov functions for saturated linear systems. Autom. 41(11): 1949-1956 (2005) - [j21]Tingshu Hu, Zongli Lin:
Convex analysis of invariant sets for a class of nonlinear systems. Syst. Control. Lett. 54(8): 729-737 (2005) - [j20]Tingshu Hu, Zongli Lin:
Absolute stability analysis of discrete-time systems with composite quadratic Lyapunov functions. IEEE Trans. Autom. Control. 50(6): 781-797 (2005) - [c35]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Nonlinear ℓ2 gain and regional analysis for systems with anti-windup compensation. ACC 2005: 3391-3396 - [c34]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Regional anti-windup compensation for linear systems with input saturation. ACC 2005: 3397-3402 - [c33]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Performance analysis of saturated systems via two forms of differential inclusions. CDC/ECC 2005: 8100-8105 - [c32]Tingshu Hu, Andrew R. Teel, Luca Zaccarian:
Non-quadratic Lyapunov functions for performance analysis of saturated systems. CDC/ECC 2005: 8106-8111 - 2004
- [j19]Haijun Fang, Zongli Lin, Tingshu Hu:
Analysis of linear systems in the presence of actuator saturation and I-disturbances. Autom. 40(7): 1229-1238 (2004) - [j18]Tingshu Hu, Zongli Lin:
Controlled invariance of ellipsoids: linear vs. nonlinear feedback. Syst. Control. Lett. 53(3-4): 203-210 (2004) - [j17]Tingshu Hu, Bin Huang, Zongli Lin:
Absolute stability with a generalized sector condition. IEEE Trans. Autom. Control. 49(4): 535-548 (2004) - [j16]Tingshu Hu, Zongli Lin:
Properties of the composite quadratic Lyapunov functions. IEEE Trans. Autom. Control. 49(7): 1162-1167 (2004) - [j15]Tingshu Hu, Zongli Lin:
Output regulation of linear systems with bounded continuous feedback. IEEE Trans. Autom. Control. 49(11): 1941-1953 (2004) - [c31]Tingshu Hu, Zongli Lin:
Convex analysis of invariant sets for a class of nonlinear systems. ACC 2004: 435-440 - [c30]Tingshu Hu, Zongli Lin, Mark F. Abel, Paul E. Allaire:
Human gait modeling: dealing with holonomic constraints. ACC 2004: 2296-2301 - [c29]Tingshu Hu, Andrew R. Teel, Zongli Lin:
A Lyapunov approach to frequency analysis. ACC 2004: 4145-4150 - [c28]Rafal Goebel, Andrew R. Teel, Tingshu Hu, Zongli Lin:
Dissipativity for dual linear differential inclusions through conjugate storage functions. CDC 2004: 2700-2705 - [c27]Zongli Lin, Matthias Glauser, Tingshu Hu, Paul E. Allaire:
Magnetically suspended balance beam with disturbances: A test rig for nonlinear output regulation. CDC 2004: 4577-4582 - [c26]Tingshu Hu, Zongli Lin:
Absolute stability analysis through a connection to saturation nonlinearities. CDC 2004: 5487-5492 - [c25]Tingshu Hu, Zongli Lin, Rafal Goebel, Andrew R. Teel:
Stability regions for saturated linear systems via conjugate Lyapunov functions. CDC 2004: 5499-5504 - 2003
- [j14]Tingshu Hu, Zongli Lin:
On the tightness of a recent set invariance condition under actuator saturation. Syst. Control. Lett. 49(5): 389-399 (2003) - [j13]Tingshu Hu, Zongli Lin:
Composite quadratic Lyapunov functions for constrained control systems. IEEE Trans. Autom. Control. 48(3): 440-450 (2003) - [j12]Tingshu Hu, Zongli Lin, Yacov A. Shamash:
On maximizing the convergence rate for linear systems with input saturation. IEEE Trans. Autom. Control. 48(7): 1249-1253 (2003) - [c24]Tingshu Hu, Zongli Lin, Wei Jiang, Paul E. Allaire:
Constrained control design of magnetic bearing systems. ACC 2003: 1086-1091 - [c23]Tingshu Hu, Bin Huang, Zongli Lin:
Absolute stability with a generalized sector condition. ACC 2003: 1855-1860 - [c22]Haijun Fang, Zongi Lin, Tingshu Hu:
Analysis of linear systems in the presence of actuator saturation and L2-disturbances. CDC 2003: 4711-4716 - [c21]Tingshu Hu, Zongli Lin:
Properties of the composite quadratic Lyapunov functions. CDC 2003: 5197-5202 - 2002
- [j11]Tingshu Hu, Zongli Lin, Ben M. Chen:
An analysis and design method for linear systems subject to actuator saturation and disturbance. Autom. 38(2): 351-359 (2002) - [j10]Tingshu Hu, Daniel E. Miller, Li Qiu:
Null controllable region of LTI discrete-time systems with input saturation. Autom. 38(11): 2009-2013 (2002) - [j9]Tingshu Hu, Zongli Lin, Ben M. Chen:
Analysis and design for discrete-time linear systems subject to actuator saturation. Syst. Control. Lett. 45(2): 97-112 (2002) - [j8]Tingshu Hu, Zongli Lin, Li Qiu:
An explicit description of null controllable regions of linear systems with saturating actuators. Syst. Control. Lett. 47(1): 65-78 (2002) - [j7]Tingshu Hu, Zongli Lin:
Exact characterization of invariant ellipsoids for single input linear systems subject to actuator saturation. IEEE Trans. Autom. Control. 47(1): 164-169 (2002) - [j6]Tingshu Hu, Zongli Lin:
On semiglobal stabilizability of antistable systems by saturated linear feedback. IEEE Trans. Autom. Control. 47(7): 1193-1198 (2002) - [j5]Tingshu Hu, Zongli Lin:
On improving the performance with bounded continuous feedback laws. IEEE Trans. Autom. Control. 47(9): 1570-1575 (2002) - [c20]Tingshu Hu, Zongli Lin:
On the necessity of a recent set invariance condition under actuator saturation. ACC 2002: 1210-1215 - [c19]Tingshu Hu, Zongli Lin:
On semi-global stabilizability of anti-stable systems by saturated linear feedback. ACC 2002: 1222-1227 - [c18]Tingshu Hu, Zongli Lin, Bin Huang, Paul E. Allaire:
Stabilization and performance of a balance beam suspended on magnetic bearings. ACC 2002: 4662-4667 - [c17]Tingshu Hu, Zongli Lin:
Composite quadratic Lyapunov functions. CDC 2002: 3494-3499 - [c16]Tingshu Hu, Zongli Lin:
Composite quadratic Lyapunov functions for constrained control systems. CDC 2002: 3500-3505 - [c15]Tingshu Hu, Zongli Lin:
The equivalence of several set invariance conditions under saturation. CDC 2002: 4146-4147 - [c14]Tingshu Hu, Zongli Lin:
On improving the performance with bounded continuous feedback laws. CDC 2002: 4543-4548 - 2001
- [j4]Tingshu Hu, Zongli Lin, Yacov A. Shamash:
Semi-global stabilization with guaranteed regional performance of linear systems subject to actuator saturation. Syst. Control. Lett. 43(3): 203-210 (2001) - [j3]Zongli Lin, Tingshu Hu:
Semi-global stabilization of linear systems subject to output saturation. Syst. Control. Lett. 43(3): 211-217 (2001) - [j2]Tingshu Hu, Zongli Lin, Li Qiu:
Stabilization of exponentially unstable linear systems with saturating actuators. IEEE Trans. Autom. Control. 46(6): 973-979 (2001) - [c13]Tingshu Hu, Zongli Lin:
Output regulation of general discrete-time linear systems with saturating actuators. ACC 2001: 3195-3200 - [c12]Tingshu Hu, Zongli Lin:
A complete stability analysis of planar discrete-time linear systems under saturation. ACC 2001: 4200-4205 - [c11]Tingshu Hu, Zongli Lin, Yacov A. Shamash:
On maximizing the convergence rate for linear systems with input saturation. ACC 2001: 4896-4901 - [c10]Tingshu Hu, Zongli Lin, Ben M. Chen:
Disturbance rejection with saturating actuators for discrete-time linear systems. CDC 2001: 1723-1728 - [c9]Tingshu Hu, Zongli Lin:
Output regulation with continuous feedback for linear systems with saturating actuators. CDC 2001: 4663-4668 - [c8]Tingshu Hu, Zongli Lin:
Exact characterization of invariant ellipsoids for linear systems with saturating actuators. CDC 2001: 4669-4674 - [c7]Tingshu Hu, Zongli Lin, Ben M. Chen:
Analysis and design for discrete-time linear systems subject to actuator saturation. CDC 2001: 4675-4680 - 2000
- [c6]Tingshu Hu, Zongli Lin, Ben M. Chen:
An analysis and design method for linear systems subject to actuator saturation and disturbance. ACC 2000: 725-729 - [c5]Tingshu Hu, Zongli Lin:
On enlarging the basin of attraction for linear systems under saturated linear feedback. ACC 2000: 1766-1770 - [c4]Tingshu Hu, Zongli Lin, Yacov A. Shamash:
Semi-global stabilization with guaranteed regional performance of linear systems subject to actuator saturation. ACC 2000: 4388-4392 - [c3]Zongli Lin, Tingshu Hu:
Semi-global stabilization of linear systems subject to output saturation. CDC 2000: 638-643 - [c2]Tingshu Hu, Zongli Lin:
Output regulation of general linear systems with saturating actuators. CDC 2000: 3242-3247 - [c1]Tingshu Hu, Achilleas N. Pitsillides, Zongli Lin:
Null controllability and stabilization of linear systems subject to asymmetric actuator saturation. CDC 2000: 3254-3259
1990 – 1999
- 1999
- [j1]Tingshu Hu, James Lam:
Improvement of parametric stability margin under pole assignment. IEEE Trans. Autom. Control. 44(10): 1938-1942 (1999)
Coauthor Index
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