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Kristopher Born

dblp:160/7672 · DBLP profile ↗
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5ranked-venue papers
3as first author
0since 2021 · last 2018
—ORCID · none

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

Databases, data management, data science and information retrieval · 3 · 2 first-authorTheory of computation · 3 · 2 first-authorSoftware engineering, systems software and programming languages · 2 · 1 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.

Software engineering, system software, and programming languages
1 paper
Requirements engineering and software design · 61% Program analysis · 30% Software testing · 9%

Topics — the 4 heaviest of 4, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Requirements engineering and software design › model-driven engineering
graph transformation
0.312018
Multi-granular conflict and dependency analysis in software engineering based on graph transformation · ICSE 2018
Requirements engineering and software design
model-driven engineering
0.312018
Multi-granular conflict and dependency analysis in software engineering based on graph transformation · ICSE 2018
Program analysis
static analysis
0.312018
Multi-granular conflict and dependency analysis in software engineering based on graph transformation · ICSE 2018
Software testing › software testing evaluation
test result analysis
0.112018
Multi-granular conflict and dependency analysis in software engineering based on graph transformation · ICSE 2018

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

static analysis · 0.3graph transformation · 0.3
YearPublicationVenuePosition
2018 Multi-granular conflict and dependency analysis in software engineering based on graph transformation
abstract
Conflict and dependency analysis (CDA) of graph transformation has been shown to be a versatile foundation for understanding interactions in many software engineering domains, including software analysis and design, model-driven engineering, and testing. In this paper, we propose a novel static CDA technique that is multi-granular in the sense that it can detect all conflicts and dependencies on multiple granularity levels. Specifically, we provide an efficient algorithm suite for computing binary, coarse-grained, and fine-grained conflicts and dependencies: Binary granularity indicates the presence or absence of conflicts and dependencies, coarse granularity focuses on root causes for conflicts and dependencies, and fine granularity shows each conflict and dependency in full detail. Doing so, we can address specific performance and usability requirements that we identified in a literature survey of CDA usage scenarios. In an experimental evaluation, our algorithm suite computes conflicts and dependencies rapidly. Finally, we present a user study, in which the participants found our coarse-grained results more understandable than the fine-grained ones reported in a state-of-the-art tool. Our overall contribution is twofold: (i) we significantly speed up the computation of fine-grained and binary CDA results and, (ii) complement them with coarse-grained ones, which offer usability benefits for numerous use cases.
Leen Lambers, Daniel Strüber 0001, Gabriele Taentzer, Kristopher Born, Jevgenij Huebert
ICSE4
2017 Henshin: A Usability-Focused Framework for EMF Model Transformation Development
Daniel Strüber 0001, Kristopher Born, Kanwal Daud Gill, Raffaela Groner, Timo Kehrer, Manuel Ohrndorf, Matthias Tichy
ICGT2
2017 Granularity of Conflicts and Dependencies in Graph Transformation Systems
Kristopher Born, Leen Lambers, Daniel Strüber 0001, Gabriele Taentzer
ICGT1
2016 An Algorithm for the Critical Pair Analysis of Amalgamated Graph Transformations
Kristopher Born, Gabriele Taentzer
ICGT1
2015 Analyzing Conflicts and Dependencies of Rule-Based Transformations in Henshin
Kristopher Born, Thorsten Arendt, Florian Heß, Gabriele Taentzer
FASE1