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Christopher M. Kellett
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2020 – today
- 2023
- [j46]Lei Wang, Christopher M. Kellett:
Robust I&I adaptive tracking control of systems with nonlinear parameterization: An ISS perspective. Autom. 158: 111273 (2023) - 2022
- [j45]Lei Wang, Lorenzo Marconi, Christopher M. Kellett:
Robust implementable regulator design of linear systems with non-vanishing measurements. Autom. 143: 110418 (2022) - [j44]Philipp Braun, Giulia Giordano, Christopher M. Kellett, Luca Zaccarian:
An Asymmetric Stabilizer Based on Scheduling Shifted Coordinates for Single-Input Linear Systems With Asymmetric Saturation. IEEE Control. Syst. Lett. 6: 746-751 (2022) - [j43]Lei Wang, Christopher M. Kellett:
Robust Output Feedback Stabilization of MIMO Invertible Nonlinear Systems With Output-Dependent Multipliers. IEEE Trans. Autom. Control. 67(6): 2989-2996 (2022) - 2021
- [j42]Timm Faulwasser, Christopher M. Kellett:
On continuous-time infinite horizon optimal control - Dissipativity, stability, and transversality. Autom. 134: 109907 (2021) - [j41]Philipp Braun, Christopher M. Kellett, Luca Zaccarian:
Explicit Construction of Stabilizing Robust Avoidance Controllers for Linear Systems With Drift. IEEE Trans. Autom. Control. 66(2): 595-610 (2021) - [i20]Lei Wang, Christopher M. Kellett:
Robust I&I Adaptive Tracking Control of Systems with Nonlinear Parameterization: An ISS Perspective. CoRR abs/2102.13411 (2021) - [i19]Lei Wang, Lorenzo Marconi, Christopher M. Kellett:
Robust Implementable Regulator Design of General Linear Systems. CoRR abs/2102.13413 (2021) - 2020
- [j40]Philipp Braun, Christopher M. Kellett:
Comment on "Stabilization with guaranteed safety using Control Lyapunov-Barrier Function". Autom. 122: 109225 (2020) - [j39]Giovanni Cherubini, Martin Guay, Sophie Tarbouriech, Kartik B. Ariyur, Mireille E. Broucke, Subhrakanti Dey, Christian Ebenbauer, Paolo Frasca, Bahman Gharesifard, Antoine Girard, João Manoel Gomes da Silva, Lars Grüne, Christopher M. Kellett, Usman Khan, Giuseppe Notarstefano, Luca Scardovi, Kyriakos G. Vamvoudakis:
Guest Editorial Introduction to the Special Issue of the IEEE L-CSS on Learning and Control. IEEE Control. Syst. Lett. 4(3): 710-712 (2020) - [j38]Philipp Braun, Lars Grüne, Christopher M. Kellett, Steven R. Weller, Karl Worthmann:
Towards price-based predictive control of a small-scale electricity network. Int. J. Control 93(1): 40-61 (2020) - [j37]Lei Wang, Christopher M. Kellett:
Adaptive Semiglobal Nonlinear Output Regulation: An Extended-State Observer Approach. IEEE Trans. Autom. Control. 65(6): 2670-2677 (2020) - [i18]Timm Faulwasser, Christopher M. Kellett:
On Continuous-Time Infinite Horizon Optimal Control - Dissipativity, Stability and Transversality. CoRR abs/2001.09601 (2020) - [i17]Lei Wang, Christopher M. Kellett:
Robust Output Feedback Stabilization of MIMO Invertible Nonlinear Systems with Output-Dependent Multipliers (extended version). CoRR abs/2007.15435 (2020)
2010 – 2019
- 2019
- [j36]Christopher M. Kellett, Steven R. Weller, Timm Faulwasser, Lars Grüne, Willi Semmler:
Feedback, dynamics, and optimal control in climate economics. Annu. Rev. Control. 47: 7-20 (2019) - [j35]Duc N. Tran, Björn Sebastian Rüffer, Christopher M. Kellett:
Convergence Properties for Discrete-Time Nonlinear Systems. IEEE Trans. Autom. Control. 64(8): 3415-3422 (2019) - [j34]Hiroshi Ito, Christopher M. Kellett:
A Small-Gain Theorem in the Absence of Strong iISS. IEEE Trans. Autom. Control. 64(9): 3897-3904 (2019) - [c50]Lei Wang, Christopher M. Kellett:
Adaptive Tracking Control via Immersion and Invariance: An (i)ISS Perspective. CDC 2019: 7019-7024 - [c49]Philipp Braun, Christopher M. Kellett, Luca Zaccarian:
Uniting control laws: On obstacle avoidance and global stabilization of underactuated linear systems. CDC 2019: 8154-8159 - [i16]Lei Wang, Christopher M. Kellett:
Adaptive Semiglobal Nonlinear Output Regulation: An Extended-State Observer Approach. CoRR abs/1901.02756 (2019) - 2018
- [j33]Vladimir Gaitsgory, Lars Grüne, Matthias Höger, Christopher M. Kellett, Steven R. Weller:
Stabilization of strictly dissipative discrete time systems with discounted optimal control. Autom. 93: 311-320 (2018) - [j32]Philipp Braun, Timm Faulwasser, Lars Grüne, Christopher M. Kellett, Steven R. Weller, Karl Worthmann:
Hierarchical distributed ADMM for predictive control with applications in power networks. IFAC J. Syst. Control. 3: 10-22 (2018) - [c48]Philipp Braun, Lars Grüne, Christopher M. Kellett:
Complete Instability of Differential Inclusions using Lyapunov Methods. CDC 2018: 718-724 - [c47]Philipp Braun, Christopher M. Kellett, Luca Zaccarian:
Unsafe Point Avoidance in Linear State Feedback. CDC 2018: 2372-2377 - [i15]Christopher M. Kellett, Steven R. Weller, Timm Faulwasser, Lars Grüne, Willi Semmler:
Feedback and Optimal Control in Climate Economics. CoRR abs/1812.08066 (2018) - 2017
- [j31]Duc N. Tran, Christopher M. Kellett, Peter M. Dower:
Qualitative equivalences of ISS and lp-gain stability properties for discrete-time nonlinear systems. Autom. 77: 360-369 (2017) - [j30]Lars Grüne, Christopher M. Kellett, Steven R. Weller:
On the Relation Between Turnpike Properties for Finite and Infinite Horizon Optimal Control Problems. J. Optim. Theory Appl. 173(3): 727-745 (2017) - [j29]Christopher M. Kellett, Peter M. Dower, Hiroshi Ito:
Relationships Between Subclasses of Integral Input-to-State Stability. IEEE Trans. Autom. Control. 62(5): 2476-2482 (2017) - [c46]Hiroshi Ito, Christopher M. Kellett:
A new formulation of small-gain theorem without imposing strong iISS with respect to Disturbances on components. CDC 2017: 1193-1198 - [c45]Philipp Braun, Lars Grüne, Christopher M. Kellett:
Feedback design using nonsmooth control Lyapunov functions: A numerical case study for the nonholonomic integrator. CDC 2017: 4890-4895 - 2016
- [j28]Hiroshi Ito, Christopher M. Kellett:
iISS and ISS dissipation inequalities: preservation and interconnection by scaling. Math. Control. Signals Syst. 28(3): 17:1-17:36 (2016) - [j27]Christopher M. Kellett, Peter M. Dower:
Input-to-State Stability, Integral Input-to-State Stability, and ℒ2-Gain Properties: Qualitative Equivalences and Interconnected Systems. IEEE Trans. Autom. Control. 61(1): 3-17 (2016) - [j26]Christopher M. Kellett, Fabian R. Wirth:
Nonlinear Scaling of (i)ISS-Lyapunov Functions. IEEE Trans. Autom. Control. 61(4): 1087-1092 (2016) - [j25]Philipp Braun, Lars Grüne, Christopher M. Kellett, Steven R. Weller, Karl Worthmann:
A Distributed Optimization Algorithm for the Predictive Control of Smart Grids. IEEE Trans. Autom. Control. 61(12): 3898-3911 (2016) - [c44]Duc N. Tran, Christopher M. Kellett, Peter M. Dower:
Analysis of discrete-time nonlinear ℓ2-gain bounds via dynamic programming. AuCC 2016: 66-70 - [c43]Salman Hafeez, Steven R. Weller, Christopher M. Kellett:
Transient climate response in the DICE integrated assessment model of climate-economy. AuCC 2016: 282-287 - [c42]Duc N. Tran, Björn Rüffer, Christopher M. Kellett:
Incremental stability properties for discrete-time systems. CDC 2016: 477-482 - 2015
- [j24]Dieter Lens, Timm Faulwasser, Christopher M. Kellett:
Ansätze zur modellprädiktiven Regelung der longitudinalen Strahldynamik in Synchrotronen. Autom. 63(8): 621-632 (2015) - [j23]Karl Worthmann, Christopher M. Kellett, Philipp Braun, Lars Grüne, Steven R. Weller:
Distributed and Decentralized Control of Residential Energy Systems Incorporating Battery Storage. IEEE Trans. Smart Grid 6(4): 1914-1923 (2015) - [c41]Steven R. Weller, Salman Hafeez, Christopher M. Kellett:
Feasibility of 2 °C as a post-2020 warming threshold via input-constrained optimal control. CCA 2015: 1117-1123 - [c40]Elham Tofighi, David Schlipf, Christopher M. Kellett:
Nonlinear model predictive controller design for extreme load mitigation in transition operation region in wind turbines. CCA 2015: 1167-1172 - [c39]Duc N. Tran, Christopher M. Kellett, Peter M. Dower:
A discrete-time strong implication-form Lyapunov function for ISS systems with respect to positive semidefinite measurement functions. AuCC 2015: 39-42 - [c38]Peter M. Dower, Christopher M. Kellett:
A small-gain feedback interconnection for bilinear systems. AuCC 2015: 126-130 - [c37]Elham Tofighi, Timm Faulwasser, Christopher M. Kellett:
Nonlinear model predictive control approach for structural load mitigation of wind turbines in presence of wind measurement uncertainties. AuCC 2015: 210-214 - [c36]Philipp Braun, Lars Grüne, Christopher M. Kellett, Steven R. Weller, Karl Worthmann:
A real-time pricing scheme for residential energy systems using a market maker. AuCC 2015: 259-262 - [c35]Salman Hafeez, Steven R. Weller, Christopher M. Kellett:
Steady-state and transient dynamic behavior of simple climate models for application in integrated assessment models. AuCC 2015: 269-273 - [c34]Duc N. Tran, Christopher M. Kellett, Peter M. Dower:
Input-to-state stability with respect to two measurement functions: Discrete-time systems. CDC 2015: 1817-1822 - [c33]Steven R. Weller, Salman Hafeez, Christopher M. Kellett:
A receding horizon control approach to estimating the social cost of carbon in the presence of emissions and temperature uncertainty. CDC 2015: 5384-5390 - [c32]Philipp Braun, Lars Grüne, Christopher M. Kellett, Steven R. Weller, Karl Worthmann:
Predictive control of a Smart Grid: A distributed optimization algorithm with centralized performance properties. CDC 2015: 5593-5598 - 2014
- [j22]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
On the capacity of the binary-symmetric parallel-relay network. Trans. Emerg. Telecommun. Technol. 25(2): 217-230 (2014) - [j21]Christopher M. Kellett:
A compendium of comparison function results. Math. Control. Signals Syst. 26(3): 339-374 (2014) - [j20]Lars Grüne, Christopher M. Kellett:
ISS-Lyapunov Functions for Discontinuous Discrete-Time Systems. IEEE Trans. Autom. Control. 59(11): 3098-3103 (2014) - [c31]Timm Faulwasser, Dieter Lens, Christopher M. Kellett:
Predictive control for longitudinal beam dynamics in heavy ion synchrotrons. CCA 2014: 1988-1995 - [c30]Sigurdur F. Hafstein, Christopher M. Kellett, Huijuan Li:
Continuous and piecewise affine Lyapunov functions using the Yoshizawa construction. ACC 2014: 548-553 - [c29]Timm Faulwasser, Dieter Lens, Christopher M. Kellett:
Offset-free output feedback predictive control for longitudinal beam dynamics in heavy ion synchrotrons. AuCC 2014: 221-226 - [c28]Peter M. Dower, Christopher M. Kellett:
Nonlinear L2-gain verification for bilinear systems. AuCC 2014: 227-232 - [c27]Peter M. Dower, Christopher M. Kellett:
Nonlinear systems with nonlinear ℒ2-gain. CDC 2014: 777-782 - [c26]Brett Ninness, Khoa T. Tran, Christopher M. Kellett:
Bayesian dynamic system estimation. CDC 2014: 1780-1785 - [c25]Johann Bjornsson, Peter Giesl, Sigurdur F. Hafstein, Christopher M. Kellett, Huijuan Li:
Computation of continuous and piecewise affine Lyapunov functions by numerical approximations of the Massera construction. CDC 2014: 5506-5511 - [c24]Huijuan Li, Sigurdur F. Hafstein, Christopher M. Kellett:
Computation of Lyapunov functions for discrete-time systems using the Yoshizawa construction. CDC 2014: 5512-5517 - [c23]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
Optimal coding functions for pairwise message sharing on finite-field multi-way relay channels. ICC 2014: 1866-1871 - 2013
- [j19]Lawrence Ong, Gottfried Lechner, Sarah J. Johnson, Christopher M. Kellett:
The Three-User Finite-Field Multi-Way Relay Channel with Correlated Sources. IEEE Trans. Commun. 61(8): 3125-3135 (2013) - [c22]Christopher M. Kellett, Peter M. Dower:
Stability of (integral) input-to-state stable interconnected nonlinear systems via qualitative equivalences. AuCC 2013: 41-46 - [c21]Christopher M. Kellett, Fabian R. Wirth, Peter M. Dower:
Input-To-State Stability, Integral Input-To-State Stability, and Unbounded Level Sets. NOLCOS 2013: 38-43 - [i14]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Capacity Region of the Finite-Field Multi-Way Relay Channel with Pairwise Common Messages. CoRR abs/1301.4730 (2013) - 2012
- [j18]Peter M. Dower, Huan Zhang, Christopher M. Kellett:
Nonlinear L2-gain verification for nonlinear systems. Syst. Control. Lett. 61(4): 563-572 (2012) - [j17]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Half-Duplex AWGN Single-Relay Channel: Full Decoding or Partial Decoding? IEEE Trans. Commun. 60(11): 3156-3160 (2012) - [j16]Christopher M. Kellett:
A Project-Based Learning Approach to Programmable Logic Design and Computer Architecture. IEEE Trans. Educ. 55(3): 378-383 (2012) - [j15]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
On the Equal-Rate Capacity of the AWGN Multiway Relay Channel. IEEE Trans. Inf. Theory 58(9): 5761-5769 (2012) - [c20]Peter M. Dower, Christopher M. Kellett, Huan Zhang:
A weak L2-gain property for nonlinear systems. CDC 2012: 2286-2291 - [c19]Christopher M. Kellett, Peter M. Dower:
A generalization of Input-to-State Stability. CDC 2012: 2970-2975 - [i13]Lawrence Ong, Roy Timo, Gottfried Lechner, Sarah J. Johnson, Christopher M. Kellett:
The Three-User Finite Field Multi-Way Relay Channel with Correlated Sources. CoRR abs/1201.1684 (2012) - [i12]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
On the Equal-Rate Capacity of the AWGN Multiway Relay Channel. CoRR abs/1207.3572 (2012) - [i11]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
On the Capacity of the Binary-Symmetric Parallel-Relay Network. CoRR abs/1207.3574 (2012) - 2011
- [j14]Sarah J. Johnson, Lawrence Ong, Christopher M. Kellett:
Joint channel-network coding strategies for networks with low-complexity relays. Eur. Trans. Telecommun. 22(7): 396-406 (2011) - [j13]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Capacity Region of Multiway Relay Channels Over Finite Fields With Full Data Exchange. IEEE Trans. Inf. Theory 57(5): 3016-3031 (2011) - [c18]Peter M. Dower, Huan Zhang, Christopher M. Kellett:
A verification theorem for nonlinear systems with nonlinear ℒ2-gain. AuCC 2011: 272-277 - [c17]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
On achievable rate regions of the asymmetric AWGN two-way relay channel. ISIT 2011: 84-88 - [c16]Lawrence Ong, Roy Timo, Gottfried Lechner, Sarah J. Johnson, Christopher M. Kellett:
The finite field multi-way relay channel with correlated sources: The three-user case. ISIT 2011: 2238-2242 - [i10]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Capacity Region of Multiway Relay Channels Over Finite Fields with Full Data Exchange. CoRR abs/1106.1969 (2011) - [i9]Lawrence Ong, Roy Timo, Gottfried Lechner, Sarah J. Johnson, Christopher M. Kellett:
The Finite Field Multi-Way Relay Channel with Correlated Sources: The Three-User Case. CoRR abs/1106.2886 (2011) - [i8]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
On Achievable Rate Regions of the Asymmetric AWGN Two-Way Relay Channel. CoRR abs/1106.2888 (2011) - [i7]Sarah J. Johnson, Lawrence Ong, Christopher M. Kellett:
Joint Channel-Network Coding Strategies for Networks with Low Complexity Relays. CoRR abs/1110.5396 (2011) - [i6]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Half-Duplex AWGN Single-Relay Channel: Full Decoding or Partial Decoding? CoRR abs/1111.2098 (2011) - [i5]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Capacity of a Class of Multi-Way Relay Channels. CoRR abs/1111.3395 (2011) - [i4]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
Functional-Decode-Forward for the General Discrete Memoryless Two-Way Relay Channel. CoRR abs/1111.3396 (2011) - 2010
- [j12]Björn Rüffer, Christopher M. Kellett, Steven R. Weller:
Connection between cooperative positive systems and integral input-to-state stability of large-scale systems. Autom. 46(6): 1019-1027 (2010) - [j11]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
An optimal coding strategy for the binary multi-way relay channel. IEEE Commun. Lett. 14(4): 330-332 (2010) - [c15]Huan Zhang, Peter M. Dower, Christopher M. Kellett:
A Bounded Real Lemma for nonlinear ℒ2-gain. CDC 2010: 2729-2734 - [c14]Peter M. Dower, Huan Zhang, Christopher M. Kellett:
Nonlinear ℒ2-gain analysis via a cascade. CDC 2010: 6242-6247 - [c13]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The binary-symmetric parallel-relay network. ISIT 2010: 654-658 - [c12]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
Capacity Theorems for the AWGN multi-way relay channel. ISIT 2010: 664-668 - [i3]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
An Optimal Coding Strategy for the Binary Multi-Way Relay Channel. CoRR abs/1004.2299 (2010) - [i2]Lawrence Ong, Christopher M. Kellett, Sarah J. Johnson:
Capacity Theorems for the AWGN Multi-Way Relay Channel. CoRR abs/1004.2300 (2010) - [i1]Lawrence Ong, Sarah J. Johnson, Christopher M. Kellett:
The Binary-Symmetric Parallel-Relay Network. CoRR abs/1004.2303 (2010)
2000 – 2009
- 2009
- [c11]Björn Sebastian Rüffer, Christopher M. Kellett, Steven R. Weller:
Integral input-to-state stability of interconnected iISS systems by means of a lower-dimensional comparison system. CDC 2009: 638-643 - 2008
- [c10]Peter M. Dower, Christopher M. Kellett:
A dynamic programming approach to the approximation of nonlinear L2-gain. CDC 2008: 1-6 - 2007
- [j10]Robert N. Shorten, Christopher M. Kellett, Douglas J. Leith:
On the Dynamics of TCP's Higher Moments. IEEE Commun. Lett. 11(2): 210-212 (2007) - [j9]Christopher M. Kellett, Richard H. Middleton, Robert N. Shorten:
On AIMD Congestion Control in Multiple Bottleneck Networks. IEEE Commun. Lett. 11(7): 631-633 (2007) - [j8]Douglas J. Leith, Christopher M. Kellett, Peter Clifford, Jonathan Epperlein, Robert N. Shorten:
A non-invasive method for link upgrade planning using coarse-grained measurements. IEEE Commun. Lett. 11(12): 1037-1039 (2007) - [j7]Christopher M. Kellett, Andrew R. Teel:
Sufficient conditions for robustness of KL\mathcal{K}\mathcal{L} -stability for difference inclusions. Math. Control. Signals Syst. 19(3): 183-205 (2007) - 2006
- [j6]Rade Stanojevic, Robert N. Shorten, Christopher M. Kellett:
Adaptive tuning of drop-tail buffers for reducing queueing delays. IEEE Commun. Lett. 10(7): 570-572 (2006) - [c9]Christopher M. Kellett, Robert N. Shorten, Douglas J. Leith:
Sizing Internet Router Buffers, Active Queue Management, and the Lur'e Problem. CDC 2006: 650-654 - [c8]Richard H. Middleton, Christopher M. Kellett, Robert N. Shorten:
Fairness and Convergence Results for Additive-Increase Multiplicative-Decrease Multiple-Bottleneck Networks. CDC 2006: 1864-1869 - [c7]Christopher M. Kellett:
Root Locus Plots and Iterative Decoding. CDC 2006: 1888-1893 - [c6]Christopher M. Kellett, Steven R. Weller:
Bifurcations and EXIT charts for the Binary Erasure Channel. ISIT 2006: 2559-2563 - 2005
- [j5]Christopher M. Kellett, Andrew R. Teel:
On the Robustness of KL-stability for Difference Inclusions: Smooth Discrete-Time Lyapunov Functions. SIAM J. Control. Optim. 44(3): 777-800 (2005) - 2004
- [j4]Christopher M. Kellett, Andrew R. Teel:
Discrete-time asymptotic controllability implies smooth control-Lyapunov function. Syst. Control. Lett. 52(5): 349-359 (2004) - [j3]Christopher M. Kellett, Andrew R. Teel:
Smooth Lyapunov functions and robustness of stability for difference inclusions. Syst. Control. Lett. 52(5): 395-405 (2004) - [j2]Christopher M. Kellett, Andrew R. Teel:
Weak Converse Lyapunov Theorems and Control-Lyapunov Functions. SIAM J. Control. Optim. 42(6): 1934-1959 (2004) - [j1]Christopher M. Kellett, Hyungbo Shim, Andrew R. Teel:
Further results on robustness of (possibly discontinuous) sample and hold feedback. IEEE Trans. Autom. Control. 49(7): 1081-1089 (2004) - 2003
- [c5]Christopher M. Kellett, Andrew R. Teel:
Results on converse Lyapunov theorems for difference inclusions. CDC 2003: 3627-3632 - [c4]Christopher M. Kellett, Andrew R. Teel:
Results on discrete-time control-Lyapunov functions. CDC 2003: 5961-5966 - 2002
- [c3]Christopher M. Kellett, Hyungbo Shim, Andrew R. Teel:
Robustness of discontinuous feedback via sample and hold control. ACC 2002: 3512-3517 - [c2]Christopher M. Kellett, Andrew R. Teel:
On robustness of stability and Lyapunov functions for discontinuous difference equations. CDC 2002: 4282-4287 - 2000
- [c1]Christopher M. Kellett, Andrew R. Teel:
Uniform asymptotic controllability to a set implies locally Lipschitz control-Lyapunov function. CDC 2000: 3994-3999
Coauthor Index
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