EDBT 2026 Demo / reviewers in the wild / expert
Alejandro Estrella-Balderrama
dblp:43/7023
· DBLP profile ↗
13ranked-venue papers
8as first author
0since 2021 · last 2016
—ORCID · none
Domains — the database's venue-derived domains; a paper can count in several
Theory of computation · 7 · 5 first-authorGraphics, computer vision, multimedia, augmented reality and games · 3 · 1 first-authorSystems, architecture and hardware · 1 · 1 first-authorSoftware engineering, systems software and programming languages · 1 · 1 first-authorDatabases, data management, data science and information retrieval · 1
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Databases, data mining, and information retrieval
1 paper |
Query processing and optimization · 44% Information retrieval · 44% Database system architecture and tuning · 13% |
Topics — the 2 heaviest of 3, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Information retrieval › web search
data freshness |
0.2 | 1 | 2016 | Shasta: Interactive Reporting At Scale · SIGMOD Conference 2016 |
Query processing and optimization
online query processing |
0.2 | 1 | 2016 | Shasta: Interactive Reporting At Scale · SIGMOD Conference 2016 |
Methods — techniques the papers use, named apart from their topics
query transformation · 0.2join processing over many tables · 0.2
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2016 | Shasta: Interactive Reporting At ScaleabstractWe describe Shasta, a middleware system built at Google to support interactive reporting in complex user-facing applications related to Google's Internet advertising business. Shasta targets applications with challenging requirements: First, user query latencies must be low. Second, underlying transactional data stores have complex "read-unfriendly" schemas, placing significant transformation logic between stored data and the read-only views that Shasta exposes to its clients. This transformation logic must be expressed in a way that scales to large and agile engineering teams. Finally, Shasta targets applications with strong data freshness requirements, making it challenging to precompute query results using common techniques such as ETL pipelines or materialized views. Instead, online queries must go all the way from primary storage to user-facing views, resulting in complex queries joining 50 or more tables. Gokul Nath Babu Manoharan, Stephan Ellner, Karl Schnaitter, Sridatta Chegu, Alejandro Estrella-Balderrama, Stephan Gudmundson, Apurv Gupta, Ben Handy, Bart Samwel, Chad Whipkey, Larysa Aharkava, Himani Apte, Nitin Gangahar, Shivakumar Venkataraman, Divyakant Agrawal, Jeffrey D. Ullman |
SIGMOD Conference | 5 |
| 2011 | Colored Simultaneous Geometric Embeddings and Universal Pointsets
Ulrik Brandes, Cesim Erten, Alejandro Estrella-Balderrama, J. Joseph Fowler, Fabrizio Frati, Markus Geyer, Carsten Gutwenger, Seok-Hee Hong 0001, Michael Kaufmann 0001, Stephen G. Kobourov, Giuseppe Liotta, Petra Mutzel, Antonios Symvonis |
Algorithmica | 3 |
| 2010 | Upward straight-line embeddings of directed graphs into point sets
Carla Binucci, Emilio Di Giacomo, Walter Didimo, Alejandro Estrella-Balderrama, Fabrizio Frati, Stephen G. Kobourov, Giuseppe Liotta |
Comput. Geom. | 4 |
| 2010 | GraphSET, a tool for simultaneous graph drawingabstractAbstract Problems in simultaneous graph drawing involve the layout of several graphs on a shared vertex set. This paper describes a Graph Simultaneous Embedding Tool, GraphSET, designed to allow the investigation of a wide range of graph embedding problems. GraphSET can be used in the study of several variants of simultaneous embedding including simultaneous geometric embedding, simultaneous embedding with fixed edges, and colored simultaneous embedding with the vertex set partitioned into color classes. The tool has three primary uses: (i) studying theoretical problems in simultaneous graph drawing through the production of examples and counterexamples, (ii) producing layouts of given classes of graphs using built‐in implementations of known algorithms, and (iii) providing a platform for development and implementation of new algorithms and data structures for all variants of simultaneous graph embedding. We also describe the design decisions involved in the construction of GraphSET in terms of the requirements dictated by its applications. GraphSET along with movies illustrating its utility are available at http://graphset.cs.arizona.edu . Copyright © 2010 John Wiley & Sons, Ltd. Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
Softw. Pract. Exp. | 1 |
| 2009 | On the Characterization of Level Planar Trees by Minimal Patterns
Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
GD | 1 |
| 2009 | Simultaneous graph embedding with bends and circular arcs
Justin Cappos, Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
Comput. Geom. | 2 |
| 2009 | Characterization of unlabeled level planar trees
Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
Comput. Geom. | 1 |
| 2008 | Graph Simultaneous Embedding Tool, GraphSET
Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
GD | 1 |
| 2008 | Upward Straight-Line Embeddings of Directed Graphs into Point Sets
Alejandro Estrella-Balderrama, Fabrizio Frati, Stephen G. Kobourov |
WG | 1 |
| 2007 | Simultaneous Geometric Graph Embeddings
Alejandro Estrella-Balderrama, Elisabeth Gassner, Michael Jünger, Merijam Percan, Marcus Schaefer 0001, Michael Schulz 0001 |
GD | 1 |
| 2006 | Simultaneous Graph Embedding with Bends and Circular Arcs
Justin Cappos, Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
GD | 2 |
| 2006 | Characterization of Unlabeled Level Planar Trees
Alejandro Estrella-Balderrama, J. Joseph Fowler, Stephen G. Kobourov |
GD | 1 |
| 2004 | Fault Tolerance and Scalability of the Reconfigurable MeshabstractSummary form only given. This paper considers fault-tolerance on the R-Mesh and LR-Mesh models. We propose a technique to identify a healthy submesh from a faulty model using the removal fault model. Then, we use scalable algorithms to simulate the faulty model on the resulting healthy submesh. We also extend this work to cover more restrictive variations of the reconfigurable mesh, specifically, the NXR-Mesh and NXLR-Mesh. The overhead for the R-Mesh and NXR-Mesh is O(log n), and we obtain a constant overhead for the LR-Mesh and NXLR-Mesh. Alejandro Estrella-Balderrama, José Alberto Fernández-Zepeda, Anu G. Bourgeois |
IPDPS | 1 |