Jens Claußen

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5ranked-venue papers
3as first author
0since 2021 · last 2000
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Databases, data management, data science and information retrieval · 5 · 3 first-author

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
5 papers
Query processing and optimization · 77% Data models and query languages · 19% Indexing and storage engines · 4%

Topics — the 10 heaviest of 11, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Query processing and optimization › analytical query processing
decision support query processing
0.012000
Exploiting early sorting and early partitioning for decisionsupport query processing · VLDB J. 2000
Query processing and optimization › query optimization › logical query optimization
disjunctive query optimization
0.012000
Optimization and Evaluation of Disjunctive Queries · IEEE Trans. Knowl. Data Eng. 2000
Query processing and optimization
join processing
0.012000
Functional-Join Processing · VLDB J. 2000
Query processing and optimization
query execution
0.012000
Optimization and Evaluation of Disjunctive Queries · IEEE Trans. Knowl. Data Eng. 2000
Data models and query languages
universal quantification
0.011997
Optimizing Queries with Universal Quantification in Object-Oriented and Object-Relational Databases · VLDB 1997
Data models and query languages
object-oriented database
0.021998
Evaluating Functional Joins Along Nested Reference Sets in Object-Relational and Object-Oriented Databases · VLDB 1998
Optimizing Queries with Universal Quantification in Object-Oriented and Object-Relational Databases · VLDB 1997
Query processing and optimization › join processing
join algorithms
0.012000
Functional-Join Processing · VLDB J. 2000
Indexing and storage engines
partitioning
0.012000
Exploiting early sorting and early partitioning for decisionsupport query processing · VLDB J. 2000
Query processing and optimization
sorting
0.012000
Exploiting early sorting and early partitioning for decisionsupport query processing · VLDB J. 2000
Data models and query languages
object-relational database
0.011998
Evaluating Functional Joins Along Nested Reference Sets in Object-Relational and Object-Oriented Databases · VLDB 1998

Methods — techniques the papers use, named apart from their topics

three-valued logic · 0.0iterator-based query engine · 0.0bypass processing · 0.0
YearPublicationVenuePosition
2000 Optimization and Evaluation of Disjunctive Queries
abstract
It is striking that the optimization of disjunctive queries-i.e. those which contain at least one OR-connective in the query predicate-has been vastly neglected in the literature, as well as in commercial systems. In this paper, we propose a novel technique, called bypass processing, for evaluating such disjunctive queries. The bypass processing technique is based on new selection and join operators that produce two output streams: the TRUE-stream with tuples satisfying the selection (join) predicate and the FALSE-stream with tuples not satisfying the corresponding predicate. Splitting the tuple streams in this way enables us to "bypass" costly predicates whenever the "fate" of the corresponding tuple (stream) can be determined without evaluating this predicate. In the paper, we show how to systematically generate bypass evaluation plans utilizing a bottom-up building-block approach. We show that our evaluation technique allows us to incorporate the standard SQL semantics of null values. For this, we devise two different approaches: one is based on explicitly incorporating three-valued logic into the evaluation plans; the other one relies on two-valued logic by "moving" all negations to atomic conditions of the selection predicate. We describe how to extend an iterator-based query engine to support bypass evaluation with little extra overhead. This query engine was used to quantitatively evaluate the bypass evaluation plans against the traditional evaluation techniques utilizing a CNFor DNF-based query predicate.
Jens Claußen, Alfons Kemper, Guido Moerkotte, Klaus Peithner, Michael Steinbrunn
IEEE Trans. Knowl. Data Eng.1
2000 Functional-Join Processing
Reinhard Braumandl, Jens Claußen, Alfons Kemper, Donald Kossmann
VLDB J.2
2000 Exploiting early sorting and early partitioning for decisionsupport query processing
Jens Claußen, Alfons Kemper, Donald Kossmann, Christian Wiesner
VLDB J.1
1998 Evaluating Functional Joins Along Nested Reference Sets in Object-Relational and Object-Oriented Databases
Reinhard Braumandl, Jens Claußen, Alfons Kemper
VLDB2
1997 Optimizing Queries with Universal Quantification in Object-Oriented and Object-Relational Databases
Jens Claußen, Alfons Kemper, Guido Moerkotte, Klaus Peithner
VLDB1