Maximilian Schwinger

dblp:273/4256 · also Max Schwinger · DBLP profile ↗
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5ranked-venue papers
0as first author
2since 2021 · last 2025
0000-0003-0290-5076ORCID · corroborated

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

Applied, interdisciplinary, general and emerging computing · 3Software engineering, systems software and programming languages · 2 · 2 since 2021
YearPublicationVenuePosition
2025 PARAGRAPH: Phase-Aware Resource Demand Profiling for HPDA/HPC Jobs
abstract
The processing of large amounts of data in central high performance data analytics (HPDA) systems is playing an increasingly important role in science and business. However, many HPDA systems exhibit a low utilization of their available resources during normal operation. An important reason for this underutilization is that too many resources are reserved for individual jobs. This is often a consequence of the common practice of reserving a uniform amount of resources such as CPU or memory for the entire execution time of a job. Given that many data intensive (DI) jobs consist of different phases with different resource demands, resources are normally reserved according to the demand of the most resource-intensive phase. This results in more resources being reserved over a long period of time than are actually needed.
Ivo Rohwer, Nikolas Herbst, Maximilian Schwinger, Peter Friedl, Michael Stephan, Samuel Kounev
ICPE3
2022 The State of Serverless Applications: Collection, Characterization, and Community Consensus
abstract
Over the last five years, all major cloud platform providers have increased their serverless offerings. Many early adopters report significant benefits for serverless-based over traditional applications, and many companies are considering moving to serverless themselves. However, currently there exist only few, scattered, and sometimes even conflicting reports on when serverless applications are well suited and what the best practices for their implementation are. We address this problem in the present study about the state of serverless applications. We collect descriptions of 89 serverless applications from open-source projects, academic literature, industrial literature, and domain-specific feedback. We analyze 16 characteristics that describe why and when successful adopters are using serverless applications, and how they are building them. We further compare the results of our characterization study to 10 existing, mostly industrial, studies and datasets; this allows us to identify points of consensus across multiple studies, investigate points of disagreement, and overall confirm the validity of our results. The results of this study can help managers to decide if they should adopt serverless technology, engineers to learn about current practices of building serverless applications, and researchers and platform providers to better understand the current landscape of serverless applications.
Simon Eismann, Joel Scheuner, Erwin Van Eyk, Maximilian Schwinger, Johannes Grohmann, Nikolas Herbst, Cristina L. Abad, Alexandru Iosup
IEEE Trans. Software Eng.4
2018 Tandem-L: Project Status and Main Findings of the Phase Bl Study
abstract
Tandem-L is a proposal for an innovative L-band SAR mission for the systematic observation of dynamic processes on the Earth's surface. The mission concept is based on two SAR satellites flying in close formation featuring latest digital beamforming techniques in combination with a large deployable reflector for increasing the swath width and imaging resolution. This enables innovative operation modes such as polarimetric SAR tomography for determining the vertical structure of vegetation and ice. With novel imaging and processing techniques and the vast recording capacity of up to 8 Terabyte/day, it will provide vital information for solving pressing scientific questions in the biosphere, geosphere, cryosphere, and hydrosphere and will make an essential contribution for a better understanding of the Earth system and its dynamics. This paper gives an overview of the Tandem-L mission project which has successfully passed the intermediate system requirements review of Phase B1.
Alberto Moreira, Markus Bachmann, Wolfgang Balzer, Daniela Borla Tridon, Erhard Diedrich, Thomas Fritz 0002, Christo Grigorov, Ralph Kahle, Gerhard Krieger, Irena Hajnsek, Sigurd Huber, Hannah Joerg, Patrick T. P. Klenk, Marie Lachaise, Edith Maurer, Konstantinos Papathanassiou, Alessandro Parizzi, Pau Prats, Jens Reimann, Marc Rodriguez-Cassola, Birgit Schättler, Maximilian Schwinger, Daniel Schulze, Ulrich Steinbrecher, Michelangelo Villano, Marwan Younis, Francesco De Zan, Manfred Zink, Mariantonietta Zonno
IGARSS23
2013 Urban Footprint Processor - Fully Automated Processing Chain Generating Settlement Masks From Global Data of the TanDEM-X Mission
abstract
The German TerraSAR-X add-on for Digital Elevation Measurement (TanDEM-X) mission (TDM) collects two global data sets of very high resolution (VHR) synthetic aperture radar (SAR) images between 2011 and 2013. Such imagery provides a unique information source for the identification of built-up areas in a so far unique spatial detail. This letter presents the novel implementation of a fully automated processing system for the delineation of human settlements worldwide based on the SAR data acquired in the context of the TDM. The proposed Urban Footprint Processor (UFP) includes three main processing stages dedicated to: i) the extraction of texture information suitable for highlighting regions characterized by highly structured and heterogeneous built-up areas; ii) the generation of a binary settlement layer (built-up, non-built-up) based on an unsupervised classification scheme accounting for both the original backscattering amplitude and the extracted texture; and iii) a final post-editing and mosaicking phase aimed at providing the final Urban Footprint (UF) product for arbitrary geographical regions. Experimental results assess the high potential of the TDM data and the proposed UFP to provide highly accurate geo-data for an improved global mapping of human settlements.
Thomas Esch, Mattia Marconcini, Andreas Felbier, Achim Roth, Wieke Heldens, Martin Huber 0002, Maximilian Schwinger, Hannes Taubenböck, Andreas Müller 0009, Stefan W. Dech
IEEE Geosci. Remote. Sens. Lett.7
2011 The tanDEM-X Ground Station Network
abstract
This paper describes DLR's Ground Station Network as setup and operated for the TanDEM-X mission payload data reception. It lists the technical layout and operational characteristics of each station. The Station Monitoring and Control System which has been successfully qualified during the TanDEM-X commissioning phase is introduced. Software design aspects are discussed high level. Key features of the Station Monitoring and Control System are provided.
Robert Metzig, Erhard Diedrich, Ralf Reißig, Maximilian Schwinger, Frank Riffel, Hennes Henniger, Birgit Schättler
IGARSS4