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David S. Gilliam
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2020 – today
- 2023
- [j7]Eugenio Aulisa, John A. Burns, David S. Gilliam:
Approximate tracking for distributed parameter systems using only sensed data. Syst. Control. Lett. 173: 105477 (2023) - [c20]Eugenio Aulisa, John A. Burns, David S. Gilliam:
A Cascading Method for Reducing Asymptotic Errors in Feedback Control of Nonlinear Distributed Parameter Systems. ACC 2023: 330-335 - 2022
- [c19]Eugenio Aulisa, John A. Burns, David S. Gilliam:
Approximate Error Feedback Controller for Tracking and Disturbance Rejection for Linear Distributed Parameter Systems. ACC 2022: 976-981 - 2021
- [c18]Eugenio Aulisa, John A. Burns, David S. Gilliam, Sai Tej Paruchuri:
Accurate Approximate Regulation of Nonlinear Delay Differential Control Systems. CDC 2021: 422-427 - [i1]Eugenio Aulisa, David S. Gilliam:
Approximation Methods for Geometric Regulation. CoRR abs/2102.06196 (2021)
2010 – 2019
- 2015
- [c17]Eugenio Aulisa, John A. Burns, David S. Gilliam:
The effect of viscosity in a tracking regulation problem for a counter-flow heat exchanger. CDC 2015: 561-566 - 2014
- [j6]Vivek Natarajan, David S. Gilliam, George Weiss:
The State Feedback Regulator Problem for Regular Linear Systems. IEEE Trans. Autom. Control. 59(10): 2708-2723 (2014) - 2013
- [c16]Eugenio Aulisa, David S. Gilliam:
Regulation of a controlled Burgers' equation: Tracking and disturbance rejection for general time dependent signals. ACC 2013: 1290-1295 - 2012
- [c15]Edward J. Allen, John A. Burns, David S. Gilliam:
Control and sensitivity reduction for a viscous Burgers' equation. CDC 2012: 967-972 - [c14]Eugenio Aulisa, John A. Burns, David S. Gilliam:
An example of thermal regulation of a two dimensional non-isothermal incompressible flow. CDC 2012: 1578-1583 - 2010
- [j5]Christopher I. Byrnes, David S. Gilliam, Changbing Hu, Victor I. Shubov:
Zero dynamics boundary control for regulation of the Kuramoto-Sivashinsky equation. Math. Comput. Model. 52(5-6): 875-891 (2010)
2000 – 2009
- 2009
- [j4]David S. Gilliam, Thorsten Hohage, Xiao Yi Ji, Frits Ruymgaart:
The Fréchet Derivative of an Analytic Function of a Bounded Operator with Some Applications. Int. J. Math. Math. Sci. 2009: 239025:1-239025:17 (2009) - [c13]Christopher I. Byrnes, David S. Gilliam:
Zero dynamics inverse design for asymptotic regulation of the heat equation: the non-colocated case. ACC 2009: 832-836 - [c12]Christopher I. Byrnes, David S. Gilliam:
On the transfer function of the zero dynamics for a boundary controlled heat problem in two dimensions. CDC 2009: 2369-2374 - 2008
- [c11]Christopher I. Byrnes, David S. Gilliam:
Geometric output regulation for a class of nonlinear distributed parameter systems. ACC 2008: 254-259 - [c10]Edward J. Allen, John A. Burns, David S. Gilliam:
On the use of numerical methods for analysis and control of nonlinear convective systems. CDC 2008: 197-202 - 2007
- [c9]Christopher I. Byrnes, David S. Gilliam:
Approximate solutions of the regulator equations for nonlinear DPS. CDC 2007: 854-859 - 2006
- [j3]Christopher I. Byrnes, David S. Gilliam, Alberto Isidori, Victor I. Shubov:
Zero dynamics modeling and boundary feedback design for parabolic systems. Math. Comput. Model. 44(9-10): 857-869 (2006) - [c8]Christopher I. Byrnes, David S. Gilliam, Alberto Isidori, Victor I. Shubov:
Interior point control of a heat equation using zero dynamics design. ACC 2006 - [c7]Christopher I. Byrnes, David S. Gilliam, Changbing Hu:
Set-point boundary control for a Kuramoto-Sivashinsky equation. CDC 2006: 75-80 - 2004
- [c6]Christopher I. Byrnes, David S. Gilliam, Alberto Isidori, Victor I. Shubov:
Static and dynamic controllers for boundary controlled distributed parameter systems. CDC 2004: 3324-3325 - 2003
- [c5]Christopher I. Byrnes, David S. Gilliam, Alberto Isidori, Victor I. Shubov:
Set point boundary control for a nonlinear distributed parameter system. CDC 2003: 312-317 - [e1]Joachim Rosenthal, David S. Gilliam:
Mathematical Systems Theory in Biology, Communications, Computation, and Finance. Springer 2003, ISBN 978-1-4419-2326-4 [contents] - 2002
- [c4]Christopher I. Byrnes, David S. Gilliam, Victor I. Shubov:
The regulator equations for retarded delay differential equations. CDC 2002: 973-974 - [c3]Christopher I. Byrnes, David S. Gilliam, Victor I. Shubov, John A. Burns:
Modelling modal based sensors for oscillatory systems. CDC 2002: 1725-1726 - 2001
- [c2]Christopher I. Byrnes, David S. Gilliam, Victor I. Shubov:
Examples of regular linear systems governed by partial differential equations. CDC 2001: 129-130 - [c1]Christopher I. Byrnes, David S. Gilliam, Jerey B. Hood, Victor I. Shubov:
Examples of output regulation for distributed parameter systems with infinite dimensional exosystem. CDC 2001: 547-548 - 2000
- [j2]Christopher I. Byrnes, István G. Laukó, David S. Gilliam, Victor I. Shubov:
Output regulation for linear distributed parameter systems. IEEE Trans. Autom. Control. 45(12): 2236-2252 (2000)
1980 – 1989
- 1988
- [j1]David S. Gilliam, Bernard Anthony Mair, Clyde F. Martin:
A Convolution Method for Inverse Heat Conduction Problems. Math. Syst. Theory 21(1): 49-60 (1988)
Coauthor Index
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