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Peter R. Wolenski
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2020 – today
- 2023
- [i1]Clinten A. Graham, Frédéric Marazzato, Peter R. Wolenski:
A Bisection Method to Solve The Elvis Problem With Convex Bounded Velocity Sets. CoRR abs/2303.08281 (2023) - 2021
- [c14]Peter R. Wolenski:
The generalized Elvis problem: Solving minimal time problems in anisotropic mediums. CDC 2021: 4552-4557 - 2020
- [c13]Sima Sobhiyeh, Nathan Borel, Marcelline Dechenaud, Clinten A. Graham, Michael C. Wong, Peter R. Wolenski, John Shepherd, Steven B. Heymsfield:
Fully Automated Pipeline for Body Composition Estimation from 3D Optical Scans using Principal Component Analysis: A Shape Up Study. EMBC 2020: 1853-1858
2010 – 2019
- 2019
- [j10]Cristopher Hermosilla, Peter R. Wolenski:
A Characteristic Method for Fully Convex Bolza Problems over Arcs of Bounded Variation. SIAM J. Control. Optim. 57(4): 2873-2901 (2019) - [c12]Sima Sobhiyeh, Alexander Dunkel, Marcelline Dechenaud, Samantha Kennedy, John Shepherd, Steven B. Heymsfield, Peter R. Wolenski:
Crotch detection on 3D optical scans of human subjects. 3DMPD 2019: 1-7 - [c11]Sima Sobhiyeh, Marcelline Dechenaud, Alexander Dunkel, Margarite L. LaBorde, Samantha Kennedy, John Shepherd, Steven B. Heymsfield, Peter R. Wolenski:
Hole Filling in 3D Scans for Digital Anthropometric Applications. EMBC 2019: 2752-2757 - 2016
- [c10]Cristopher Hermosilla, Peter R. Wolenski:
Self-dual approximations to fully convex impulsive systems. CDC 2016: 6198-6203 - 2014
- [c9]Peter R. Wolenski:
Another look at strong invariance on stratified domains. CDC 2014: 2304-2309 - 2013
- [j9]Giovanni Colombo, Antonio Marigonda, Peter R. Wolenski:
The Clarke Generalized Gradient for Functions Whose Epigraph Has Positive Reach. Math. Oper. Res. 38(3): 451-468 (2013) - 2012
- [j8]Abdou K. Drame, Denis Dochain, Joseph J. Winkin, Peter R. Wolenski:
Periodic trajectories of distributed parameter biochemical systems with time delay. Appl. Math. Comput. 218(14): 7395-7405 (2012)
2000 – 2009
- 2009
- [j7]Madhusudhanan Balasubramanian, Stanislav Zabic, Christopher Bowd, Hilary W. Thompson, Peter R. Wolenski, S. Sitharama Iyengar, Bijaya B. Karki, Linda M. Zangwill:
A Framework for Detecting Glaucomatous Progression in the Optic Nerve Head of an Eye Using Proper Orthogonal Decomposition. IEEE Trans. Inf. Technol. Biomed. 13(5): 781-793 (2009) - 2007
- [j6]Madhusudhanan Balasubramanian, S. Sitharama Iyengar, Roger W. Beuerman, Juan Reynaud, Peter R. Wolenski:
Real-time restoration of white-light confocal microscope optical sections. J. Electronic Imaging 16(3): 033009 (2007) - [j5]Peter R. Wolenski, Stanislav Zabic:
A Sampling Method and Approximation Results for Impulsive Systems. SIAM J. Control. Optim. 46(3): 983-998 (2007) - 2006
- [j4]Giovanni Colombo, Antonio Marigonda, Peter R. Wolenski:
Some New Regularity Properties for the Minimal Time Function. SIAM J. Control. Optim. 44(6): 2285-2299 (2006) - 2005
- [c8]Peter R. Wolenski, Stanislav Zabic:
Approximate Trajectories and Sampling Methods For Impulsive Systems. CDC/ECC 2005: 6934-6939 - 2004
- [j3]Giovanni Colombo, Peter R. Wolenski:
The subgradient formula for the minimal time function in the case of constant dynamics in Hilbert space. J. Glob. Optim. 28(3-4): 269-282 (2004) - 2003
- [c7]Vinicio R. Rios, Peter R. Wolenski:
A characterization of strongly invariant systems for a class of non-Lipschitz multifunctions. CDC 2003: 2593-2594 - 2002
- [c6]Peter R. Wolenski:
Invariance properties for impulse systems. CDC 2002: 1113-1116 - [c5]Giovanni Colombo, Peter R. Wolenski:
Subdifferential and regularity properties of the minimum time function: an analysis for a constant dynamics. CDC 2002: 1117-1122 - [c4]Philip D. Loewen, Stephen J. Watson, Peter R. Wolenski:
A variational problem with a continuum of weak local minima. CDC 2002: 3530-3533 - [c3]Norma Ortiz, Peter R. Wolenski:
Decoupling time-delays. CDC 2002: 3551-3552 - 2001
- [c2]R. Tyrrell Rockafellar, Peter R. Wolenski:
Duality and dynamics in Hamilton-Jacobi theory for fully convex problems of control. CDC 2001: 2763-2767 - [c1]R. Tyrrell Rockafellar, Peter R. Wolenski:
Envelope representations in Hamilton-Jacobi theory for fully convex problems of control. CDC 2001: 2768-2771 - 2000
- [j2]R. Tyrrell Rockafellar, Peter R. Wolenski:
Convexity in Hamilton-Jacobi Theory I: Dynamics and Duality. SIAM J. Control. Optim. 39(5): 1323-1350 (2000) - [j1]R. Tyrrell Rockafellar, Peter R. Wolenski:
Convexity in Hamilton-Jacobi Theory II: Envelope Representations. SIAM J. Control. Optim. 39(5): 1351-1372 (2000)
Coauthor Index
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