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Joachim Hyam Rubinstein
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- affiliation: University of Melbourne, Department of Mathematics and Statistics
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2020 – today
- 2024
- [j35]Peter Alexander Grossman, David Kirszenblat, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Curvature-constrained Steiner networks with three terminals. J. Glob. Optim. 90(3): 691-710 (2024) - 2022
- [j34]David Whittle, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Solving the prize-collecting Euclidean Steiner tree problem. Int. Trans. Oper. Res. 29(3): 1479-1501 (2022) - [j33]David Whittle, Marcus Brazil, Peter Alexander Grossman, Joachim Hyam Rubinstein, Doreen A. Thomas:
Minimum Steiner trees on a set of concyclic points and their center. Int. Trans. Oper. Res. 29(4): 2201-2225 (2022) - [c7]Joachim Hyam Rubinstein, Benjamin I. P. Rubinstein:
Unlabelled Sample Compression Schemes for Intersection-Closed Classes and Extremal Classes. NeurIPS 2022 - [i3]J. Hyam Rubinstein, Benjamin I. P. Rubinstein:
Unlabelled Sample Compression Schemes for Intersection-Closed Classes and Extremal Classes. CoRR abs/2210.05455 (2022) - 2020
- [j32]Peter Alexander Grossman, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Scheduling the construction of value and discount weighted trees for maximum net present value. Comput. Oper. Res. 115: 104578 (2020) - [j31]Juan L. Yarmuch, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Optimum ramp design in open pit mines. Comput. Oper. Res. 115: 104739 (2020)
2010 – 2019
- 2018
- [j30]David Whittle, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Combined optimisation of an open-pit mine outline and the transition depth to underground mining. Eur. J. Oper. Res. 268(2): 624-634 (2018) - [j29]David Kirszenblat, K. G. Sirinanda, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Minimal curvature-constrained networks. J. Glob. Optim. 72(1): 71-87 (2018) - 2016
- [j28]K. G. Sirinanda, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Gradient-constrained discounted Steiner trees I: optimal tree configurations. J. Glob. Optim. 64(3): 497-513 (2016) - [j27]K. G. Sirinanda, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Gradient-constrained discounted Steiner trees II: optimally locating a discounted Steiner point. J. Glob. Optim. 64(3): 515-532 (2016) - 2015
- [j26]K. G. Sirinanda, Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Maximizing the net present value of a Steiner tree. J. Glob. Optim. 62(2): 391-407 (2015) - [j25]Alan J. Chang, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Optimal curvature and gradient-constrained directional cost paths in 3-space. J. Glob. Optim. 62(3): 507-527 (2015) - 2014
- [j24]Marcus Brazil, Peter Alexander Grossman, J. Hyam Rubinstein, Doreen A. Thomas:
Improving Underground Mine Access Layouts Using Software Tools. Interfaces 44(2): 195-203 (2014) - [i2]J. Hyam Rubinstein, Benjamin I. P. Rubinstein, Peter L. Bartlett:
Bounding Embeddings of VC Classes into Maximum Classes. CoRR abs/1401.7388 (2014) - 2013
- [j23]Peter Alexander Grossman, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Minimal Curvature-Constrained Paths in the Plane with a Constraint on arcs with Opposite orientations. Int. J. Comput. Geom. Appl. 23(3): 171-196 (2013) - 2012
- [j22]Alan J. Chang, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Curvature-constrained directional-cost paths in the plane. J. Glob. Optim. 53(4): 663-681 (2012) - [j21]Benjamin I. P. Rubinstein, J. Hyam Rubinstein:
A Geometric Approach to Sample Compression. J. Mach. Learn. Res. 13: 1221-1261 (2012) - [j20]Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Gradient-Constrained Minimum Networks. III. Fixed Topology. J. Optim. Theory Appl. 155(1): 336-354 (2012) - 2011
- [c6]Alan J. Chang, Marcus Brazil, Doreen A. Thomas, J. Hyam Rubinstein:
Optimal curvature-constrained paths with anisotropic costs in the plane. AuCC 2011: 112-117 - [c5]José Ayala-Hoffmann, Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas:
Extendibility and path components of admissible paths for the Dubins problem. AuCC 2011: 440-444 - 2010
- [j19]Benjamin I. P. Rubinstein, Peter L. Bartlett, J. Hyam Rubinstein:
Corrigendum to "Shifting: One-inclusion mistake bounds and sample compression" [J. Comput. System Sci 75 (1) (2009) 37-59]. J. Comput. Syst. Sci. 76(3-4): 278-280 (2010)
2000 – 2009
- 2009
- [j18]Benjamin I. P. Rubinstein, Peter L. Bartlett, J. Hyam Rubinstein:
Shifting: One-inclusion mistake bounds and sample compression. J. Comput. Syst. Sci. 75(1): 37-59 (2009) - [i1]Benjamin I. P. Rubinstein, J. Hyam Rubinstein:
A Geometric Approach to Sample Compression. CoRR abs/0911.3633 (2009) - 2008
- [c4]J. Hyam Rubinstein, Benjamin I. P. Rubinstein:
Geometric & Topological Representations of Maximum Classes with Applications to Sample Compression. COLT 2008: 299-310 - 2007
- [c3]Marcus Brazil, Peter Alexander Grossman, David H. Lee, J. Hyam Rubinstein, Doreen A. Thomas, Nicholas C. Wormald:
Constrained Path Optimisation for Underground Mine Layout. World Congress on Engineering 2007: 856-861 - 2006
- [j17]J. Hyam Rubinstein, Jia F. Weng, Nicholas C. Wormald:
Approximations and Lower Bounds for the Length of Minimal Euclidean Steiner Trees. J. Glob. Optim. 35(4): 573-592 (2006) - [c2]Benjamin I. P. Rubinstein, Peter L. Bartlett, J. Hyam Rubinstein:
Shifting, One-Inclusion Mistake Bounds and Tight Multiclass Expected Risk Bounds. NIPS 2006: 1193-1200 - 2005
- [j16]J. Hyam Rubinstein, Robert Sinclair:
Visualizing Ricci Flow of Manifolds of Revolution. Exp. Math. 14(3): 285-298 (2005) - 2001
- [j15]Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Gradient-constrained minimum networks. I. Fundamentals. J. Glob. Optim. 21(2): 139-155 (2001) - [j14]J. Hyam Rubinstein, Doreen A. Thomas, Nicholas C. Wormald:
A polynomial algorithm for a constrained traveling salesman problem. Networks 38(2): 68-75 (2001) - 2000
- [j13]Jia F. Weng, J. Hyam Rubinstein:
A note on the compression theorem for convex surfaces. Discret. Math. 212(3): 257-260 (2000)
1990 – 1999
- 1997
- [j12]Iain R. Aitchison, J. Hyam Rubinstein:
Geodesic Surfaces in Knot Complements. Exp. Math. 6(2): 137-150 (1997) - [j11]J. Hyam Rubinstein, Jia F. Weng:
Compression Theorems and Steiner Ratios on Spheres. J. Comb. Optim. 1(1): 67-78 (1997) - [j10]Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Full Minimal Steiner Trees on Lattice Sets. J. Comb. Theory A 78(1): 51-91 (1997) - [j9]Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Minimal Steiner Trees for Rectangular Arrays of Lattice Points. J. Comb. Theory A 79(2): 181-208 (1997) - [j8]J. Hyam Rubinstein, Doreen A. Thomas, Nicholas C. Wormald:
Steiner Trees for Terminals Constrained to Curves. SIAM J. Discret. Math. 10(1): 1-17 (1997) - [c1]Marcus Brazil, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Shortest networks on spheres. Network Design: Connectivity and Facilities Location 1997: 453-461 - 1996
- [j7]Marcus Brazil, T. Cole, J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng, Nicholas C. Wormald:
Minimal Steiner Trees for 2k×2k Square Lattices. J. Comb. Theory A 73(1): 91-110 (1996) - 1993
- [j6]Doreen A. Thomas, J. Hyam Rubinstein, T. Cole:
The Steiner Minimal Network for Convex Configurations. Discret. Comput. Geom. 9: 323-333 (1993) - 1992
- [j5]J. Hyam Rubinstein, Doreen A. Thomas:
Graham's Problem on Shortest Networks for Points on a Circle. Algorithmica 7(2&3): 193-218 (1992) - [j4]J. Hyam Rubinstein, Doreen A. Thomas:
The Steiner Ration Conjecture for Cocircular Points. Discret. Comput. Geom. 7: 77-86 (1992) - [j3]J. Hyam Rubinstein, Doreen A. Thomas, Jia F. Weng:
Degree-five Steiner points cannot reduce network costs for planar sets. Networks 22(6): 531-537 (1992) - 1991
- [j2]J. Hyam Rubinstein, Doreen A. Thomas:
A variational approach to the Steiner network problem. Ann. Oper. Res. 33(6): 481-499 (1991) - [j1]J. Hyam Rubinstein, Doreen A. Thomas:
The Steiner ratio conjecture for six points. J. Comb. Theory A 58(1): 54-77 (1991)
Coauthor Index
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