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Jeff Borggaard
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2020 – today
- 2024
- [c23]Hamza Adjerid, Jeff Borggaard:
Sum of Squares Approximations to Energy Functions. ACC 2024: 3308-3315 - 2023
- [i6]Boris Kramer, Serkan Gugercin, Jeff Borggaard:
Nonlinear Balanced Truncation: Part 2 - Model Reduction on Manifolds. CoRR abs/2302.02036 (2023) - 2022
- [j14]Harsh Sharma, Jeff Borggaard, Mayuresh Patil, Craig A. Woolsey:
Performance assessment of energy-preserving, adaptive time-step variational integrators. Commun. Nonlinear Sci. Numer. Simul. 114: 106646 (2022) - 2021
- [j13]Mouhacine Benosman, Jeff Borggaard:
Robust nonlinear state estimation for a class of infinite-dimensional systems using reduced-order models. Int. J. Control 94(5): 1309-1320 (2021) - [i5]Harsh Sharma, Jeff Borggaard, Mayuresh Patil, Craig A. Woolsey:
Performance Assessment of Energy-preserving, Adaptive Time-Step Variational Integrators. CoRR abs/2108.05420 (2021) - 2020
- [j12]Jeff Borggaard, Nathan E. Glatt-Holtz, Justin Krometis:
A Bayesian Approach to Estimating Background Flows from a Passive Scalar. SIAM/ASA J. Uncertain. Quantification 8(3): 1036-1060 (2020) - [c22]Jeff Borggaard, Lizette Zietsman:
The Quadratic-Quadratic Regulator Problem: Approximating feedback controls for quadratic-in-state nonlinear systems. ACC 2020: 818-823 - [i4]Jeff Borggaard, Lizette Zietsman:
On Approximating Polynomial-Quadratic Regulator Problems. CoRR abs/2009.11068 (2020)
2010 – 2019
- 2019
- [j11]Jeff Borggaard, Nathan E. Glatt-Holtz, Justin Krometis:
GPU-accelerated particle methods for evaluation of sparse observations for inverse problems constrained by diffusion PDEs. J. Comput. Phys. 391: 142-154 (2019) - [c21]Shumon Koga, Mouhacine Benosman, Jeff Borggaard:
Learning-Based Robust Observer Design for Coupled Thermal and Fluid Systems. ACC 2019: 941-946 - [c20]Mouhacine Benosman, Jeff Borggaard:
Robust Nonlinear State Estimation for Thermal-Fluid Models Using Reduced-Order Models: The Case of the Boussinesq Equations. CDC 2019: 2157-2162s - 2018
- [j10]Andrea Carracedo Rodriguez, Serkan Gugercin, Jeff Borggaard:
Interpolatory model reduction of parameterized bilinear dynamical systems. Adv. Comput. Math. 44(6): 1887-1916 (2018) - [c19]Jeff Borggaard, Lizette Zietsman:
Computation of Nonlinear Feedback for Flow Control Problems. ACC 2018: 1726-1731 - 2017
- [j9]Tyrone S. Phillips, Joseph M. Derlaga, Christopher J. Roy, Jeff Borggaard:
Error transport equation boundary conditions for the Euler and Navier-Stokes equations. J. Comput. Phys. 330: 46-64 (2017) - [c18]Mouhacine Benosman, Jeff Borggaard, Boris Kramer:
Robust POD model stabilization for the 3D Boussinesq equations based on Lyapunov theory and extremum seeking. ACC 2017: 1827-1832 - [c17]Jeff Borggaard, Alan Lattimer:
POD models for positive fields in advection-diffusion-reaction equations. ACC 2017: 3797-3802 - [i3]Andrea Carracedo Rodriguez, Serkan Gugercin, Jeff Borggaard:
Interpolatory Model Reduction of Parameterized Bilinear Dynamical Systems. CoRR abs/1712.07308 (2017) - 2016
- [j8]Jeff Borggaard, Zhu Wang, Lizette Zietsman:
A goal-oriented reduced-order modeling approach for nonlinear systems. Comput. Math. Appl. 71(11): 2155-2169 (2016) - [c16]Jeff Borggaard, Serkan Gugercin, Lizette Zietsman:
Feedback stabilization of fluids using reduced-order models for control and compensator design. CDC 2016: 7579-7585 - [i2]Mouhacine Benosman, Jeff Borggaard, Boris Kramer:
Robust Reduced-Order Model Stabilization for Partial Differential Equations Based on Lyapunov Theory and Extremum Seeking with Application to the 3D Boussinesq Equations. CoRR abs/1604.04586 (2016) - 2014
- [i1]Jeff Borggaard, Serkan Gugercin:
Model Reduction for DAEs with an Application to Flow Control. CoRR abs/1406.1253 (2014) - 2013
- [c15]Jeff Borggaard, Vitor Leite Nunes, Hans-Werner van Wyk:
Using Fréchet sensitivity analysis to interrogate distributed parameters in random systems. ACC 2013: 491-495 - 2012
- [c14]Jeff Borggaard, Eugene M. Cliff, Serkan Gugercin:
Model reduction for indoor-air behavior in control design for energy-efficient buildings. ACC 2012: 2283-2288 - [c13]Jeff Borggaard, Hans-Werner van Wyk:
Optimization-based estimation of random distributed parameters in elliptic partial differential equations. CDC 2012: 2926-2933 - 2011
- [j7]Zhu Wang, Imran Akhtar, Jeff Borggaard, Traian Iliescu:
Two-level discretizations of nonlinear closure models for proper orthogonal decomposition. J. Comput. Phys. 230(1): 126-146 (2011) - [j6]Jeff Borggaard, Traian Iliescu, Zhu Wang:
Artificial viscosity proper orthogonal decomposition. Math. Comput. Model. 53(1-2): 269-279 (2011) - [c12]Jeff Borggaard, Vitor Leite Nunes:
Fréchet sensitivity analysis for partial differential equations with distributed parameters. ACC 2011: 1789-1794 - [c11]Jeff Borggaard, John A. Burns, Lizette Zietsman:
On using LQG performance metrics for sensor placement. ACC 2011: 2381-2386 - 2010
- [j5]Alexander Hay, Jeff Borggaard, Imran Akhtar, Dominique Pelletier:
Reduced-order models for parameter dependent geometries based on shape sensitivity analysis. J. Comput. Phys. 229(4): 1327-1352 (2010) - [c10]Jeff Borggaard, Miroslav Stoyanov, Lizette Zietsman:
Linear feedback control of a von Kármán street by cylinder rotation. ACC 2010: 5674-5681 - [c9]Imran Akhtar, Jeff Borggaard, John A. Burns:
High performance computing for energy efficient buildings. FIT 2010: 36
2000 – 2009
- 2009
- [c8]Jeff Borggaard, John A. Burns, Amit Surana, Lizette Zietsman:
Control, estimation and optimization of energy efficient buildings. ACC 2009: 837-841 - 2008
- [j4]Jeff Borggaard, Traian Iliescu, Hyesuk Lee, John Paul Roop, Hyunjin Son:
A Two-Level Discretization Method for the Smagorinsky Model. Multiscale Model. Simul. 7(2): 599-621 (2008) - [j3]Jeff Borggaard, Traian Iliescu, John Paul Roop:
A Bounded Artificial Viscosity Large Eddy Simulation Model. SIAM J. Numer. Anal. 47(1): 622-645 (2008) - [c7]Jeff Borggaard, Miroslav Stoyanov:
An efficient long-time integrator for Chandrasekhar equations. CDC 2008: 3983-3988 - 2006
- [j2]Jeff Borggaard, Traian Iliescu:
Approximate deconvolution boundary conditions for large eddy simulation. Appl. Math. Lett. 19(8): 735-740 (2006) - [c6]Jeff Borggaard:
Optimal reduced-order modeling for nonlinear distributed parameter systems. ACC 2006 - [c5]Christopher A. Beattie, Jeff Borggaard, Serkan Gugercin, Traian Iliescu:
A Domain Decomposition Approach to POD. CDC 2006: 6750-6756 - 2005
- [c4]Michael A. Demetriou, Jeff Borggaard:
Design of worst spatial distribution of disturbances for a class of parabolic partial differential equations. ACC 2005: 3894-3899 - 2004
- [c3]Michael A. Demetriou, Jeff Borggaard:
Optimization of a joint sensor placement and robust estimation scheme for distributed parameter processes subject to worst case spatial disturbance distributions. ACC 2004: 2239-2244 - [c2]Jeff Borggaard, John A. Burns, Eric Vugrin, Lizette Zietsman:
On strong convergence of feedback operators for non-normal distributed parameter systems. CDC 2004: 1526-1531 - 2003
- [c1]Michael A. Demetriou, Jeff Borggaard:
Optimization of an integrated actuator placement and robust control scheme for distributed parameter processes subject to worst-case spatial disturbance distribution. ACC 2003: 2114-2119 - 2000
- [j1]Jeff Borggaard, Arun Verma:
On Efficient Solutions to the Continuous Sensitivity Equation Using Automatic Differentiation. SIAM J. Sci. Comput. 22(1): 39-62 (2000)
Coauthor Index
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