EDBT 2026 Demo / reviewers in the wild / expert
Michael Kluge
dblp:80/5315
· DBLP profile ↗
7ranked-venue papers
4as first author
0since 2021 · last 2018
—ORCID · conflict
Domains — the database's venue-derived domains; a paper can count in several
Systems, architecture and hardware · 5 · 3 first-authorApplied, interdisciplinary, general and emerging computing · 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.
| Interdisciplinary, comprehensive, and emerging computing
1 paper |
Bioinformatics and computational biology · 100% |
Topics — the 1 heaviest of 1, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Bioinformatics and computational biology › genomics
next-generation sequencing data analysis |
0.3 | 1 | 2017 | KNIME4NGS: a comprehensive toolbox for next generation sequencing analysis · Bioinform. 2017 |
Methods — techniques the papers use, named apart from their topics
workflow management · 0.3modular pipeline construction · 0.3
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2018 | Watchdog - a workflow management system for the distributed analysis of large-scale experimental dataabstractBACKGROUND: The development of high-throughput experimental technologies, such as next-generation sequencing, have led to new challenges for handling, analyzing and integrating the resulting large and diverse datasets. Bioinformatical analysis of these data commonly requires a number of mutually dependent steps applied to numerous samples for multiple conditions and replicates. To support these analyses, a number of workflow management systems (WMSs) have been developed to allow automated execution of corresponding analysis workflows. Major advantages of WMSs are the easy reproducibility of results as well as the reusability of workflows or their components. RESULTS: In this article, we present Watchdog, a WMS for the automated analysis of large-scale experimental data. Main features include straightforward processing of replicate data, support for distributed computer systems, customizable error detection and manual intervention into workflow execution. Watchdog is implemented in Java and thus platform-independent and allows easy sharing of workflows and corresponding program modules. It provides a graphical user interface (GUI) for workflow construction using pre-defined modules as well as a helper script for creating new module definitions. Execution of workflows is possible using either the GUI or a command-line interface and a web-interface is provided for monitoring the execution status and intervening in case of errors. To illustrate its potentials on a real-life example, a comprehensive workflow and modules for the analysis of RNA-seq experiments were implemented and are provided with the software in addition to simple test examples. CONCLUSIONS: Watchdog is a powerful and flexible WMS for the analysis of large-scale high-throughput experiments. We believe it will greatly benefit both users with and without programming skills who want to develop and apply bioinformatical workflows with reasonable overhead. The software, example workflows and a comprehensive documentation are freely available at www.bio.ifi.lmu.de/watchdog. Michael Kluge, Caroline C. Friedel |
BMC Bioinform. | 1 |
| 2017 | KNIME4NGS: a comprehensive toolbox for next generation sequencing analysisabstractSummary: Analysis of Next Generation Sequencing (NGS) data requires the processing of large datasets by chaining various tools with complex input and output formats. In order to automate data analysis, we propose to standardize NGS tasks into modular workflows. This simplifies reliable handling and processing of NGS data, and corresponding solutions become substantially more reproducible and easier to maintain. Here, we present a documented, linux-based, toolbox of 42 processing modules that are combined to construct workflows facilitating a variety of tasks such as DNAseq and RNAseq analysis. We also describe important technical extensions. The high throughput executor (HTE) helps to increase the reliability and to reduce manual interventions when processing complex datasets. We also provide a dedicated binary manager that assists users in obtaining the modules' executables and keeping them up to date. As basis for this actively developed toolbox we use the workflow management software KNIME. Availability and Implementation: See http://ibisngs.github.io/knime4ngs for nodes and user manual (GPLv3 license). Contact: [email protected]. Supplementary information: Supplementary data are available at Bioinformatics online. Maximilian Hastreiter, Tim Jeske, Jonathan Hoser, Michael Kluge, Kaarin Ahomaa, Marie-Sophie Friedl, Sebastian J. Kopetzky, Jan-Dominik Quell, Hans-Werner Mewes, Robert Küffner |
Bioinform. | 4 |
| 2013 | Performance and quality of service of data and video movement over a 100 Gbps testbedabstractDigital instruments and simulations are creating an ever-increasing amount of data. The need for institutions to acquire these data and transfer them for analysis, visualization, and archiving is growing as well. In parallel, networking technology is evolving, but at a much slower rate than our ability to create and store data. Single fiber 100 Gbps networking solutions have recently been deployed as national infrastructure. This article describes our experiences with data movement and video conferencing across a networking testbed, using the first commercially available single fiber 100 Gbps technology. The testbed is unique in its ability to be configured for a total length of 60, 200, or 400 km, allowing for tests with varying network latency. We performed low-level TCP tests and were able to use more than 99.9% of the theoretical available bandwidth with minimal tuning efforts. We used the Lustre file system to simulate how end users would interact with a remote file system over such a high performance link. We were able to use 94.4% of the theoretical available bandwidth with a standard file system benchmark, essentially saturating the wide area network. Finally, we performed tests with H.323 video conferencing hardware and quality of service (QoS) settings, showing that the link can reliably carry a full high-definition stream. Overall, we demonstrated the practicality of 100 Gbps networking and Lustre as excellent tools for data management. Michael Kluge, Stephen C. Simms, Thomas William, Robert Henschel, Andy Georgi, Christian Meyer 0004, Matthias S. Müller, Craig A. Stewart, Wolfgang Wünsch, Wolfgang E. Nagel |
Future Gener. Comput. Syst. | 1 |
| 2012 | HPC File Systems in Wide Area Networks: Understanding the Performance of Lustre over WAN
Alvaro Aguilera, Michael Kluge, Thomas William, Wolfgang E. Nagel |
Euro-Par | 2 |
| 2009 | Pattern Matching and I/O Replay for POSIX I/O in Parallel Programs
Michael Kluge, Andreas Knüpfer, Matthias S. Müller, Wolfgang E. Nagel |
Euro-Par | 1 |
| 2007 | Quality Assurance for Clusters: Acceptance-, Stress-, and Burn-In Tests for General Purpose Clusters
Matthias S. Müller, Guido Juckeland, Matthias Jurenz, Michael Kluge |
HPCC | 4 |
| 2005 | Knowledge Based Automatic Scalability Analysis and Extrapolation for MPI Programs
Michael Kluge, Andreas Knüpfer, Wolfgang E. Nagel |
Euro-Par | 1 |