VLDB 2026 Research / reviewers in the wild / expert
Diego Cifuentes
dblp:132/8502 · also Diego Fernando Cifuentes Pardo
· DBLP profile ↗
6ranked-venue papers
5as first author
4since 2021 · last 2025
0000-0003-0222-3761ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Theory of computation · 4 · 4 first-author · 3 since 2021Artificial intelligence and machine learning · 1 · 1 first-author · 1 since 2021Computer networks · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Lagrangian Dual for Integer Optimization with Zero Duality Gap that Admits Decomposition
Diego Cifuentes, Santanu Subhas Dey, Jingye Xu |
IPCO | 1 |
| 2024 | Sensitivity Analysis for Mixed Binary Quadratic Programming
Diego Cifuentes, Santanu Subhas Dey, Jingye Xu |
IPCO | 1 |
| 2022 | Polynomial time guarantees for the Burer-Monteiro methodabstractThe Burer-Monteiro method is one of the most widely used techniques for solving large-scale semidefinite programs (SDP). The basic idea is to solve a nonconvex program in $Y$, where $Y$ is an $n \times p$ matrix such that $X = Y Y^T$. We show that this method can solve SDPs in polynomial time in a smoothed analysis setting. More precisely, we consider an SDP whose domain satisfies some compactness and smoothness assumptions, and slightly perturb the cost matrix and the constraints. We show that if $p \gtrsim \sqrt{2(1{+}\eta)m}$, where $m$ is the number of constraints and $\eta>0$ is any fixed constant, then the Burer-Monteiro method can solve SDPs to any desired accuracy in polynomial time, in the setting of smooth analysis. The bound on $p$ approaches the celebrated Barvinok-Pataki bound in the limit as $\eta$ goes to zero, beneath which it the nonconvex program can be suboptimal. Our main technical contribution, which is key for our tight bound on $p$, is to connect spurious approximately critical points of the nonconvex program to tubular neighborhoods of certain algebraic varieties, and then estimate the volume of such tubes. Diego Cifuentes, Ankur Moitra |
NeurIPS | 1 |
| 2022 | Voronoi cells of varieties
Diego Cifuentes, Kristian Ranestad, Bernd Sturmfels, Madeleine Weinstein |
J. Symb. Comput. | 1 |
| 2016 | Exploiting Chordal Structure in Polynomial Ideals: A Gröbner Bases ApproachabstractChordal structure and bounded treewidth allow for efficient computation in numerical linear algebra, graphical models, constraint satisfaction, and many other areas. In this paper, we begin the study of how to exploit chordal structure in computational algebraic geometry---in particular, for solving polynomial systems. The structure of a system of polynomial equations can be described in terms of a graph. By carefully exploiting the properties of this graph (in particular, its chordal completions), more efficient algorithms can be developed. To this end, we develop a new technique, which we refer to as chordal elimination, that relies on elimination theory and Gröbner bases. By maintaining graph structure throughout the process, chordal elimination can outperform standard Gröbner bases algorithms in many cases. The reason is because all computations are done on “smaller” rings of size equal to the treewidth of the graph (instead of the total number of variables). In particular, for a restricted class of ideals, the computational complexity is linear in the number of variables. Chordal structure arises in many relevant applications. We demonstrate the suitability of our methods in examples from graph colorings, cryptography, sensor localization, and differential equations. Diego Cifuentes, Pablo A. Parrilo |
SIAM J. Discret. Math. | 1 |
| 2013 | Bringing cross-layer MIMO to today's wireless LANsabstractRecent years have seen major innovations in cross-layer wireless designs. Despite demonstrating significant throughput gains, hardly any of these technologies have made it into real networks. Deploying cross-layer innovations requires adoption from Wi-Fi chip manufacturers. Yet, manufacturers hesitate to undertake major investments without a better understanding of how these designs interact with real networks and applications. Swarun Kumar, Diego Cifuentes, Shyamnath Gollakota, Dina Katabi |
SIGCOMM | 2 |