@misc{36363,
  author       = {{Pöllmann, Andreas}},
  booktitle    = {{Oxford Bibliographies: Communication}},
  publisher    = {{Oxford University Press}},
  title        = {{{Intercultural capital}}},
  doi          = {{10.1093/obo/9780199756841-0237}},
  year         = {{2019}},
}

@misc{36375,
  author       = {{Pöllmann, Andreas}},
  booktitle    = {{Compare: A Journal of Comparative and International Education}},
  issn         = {{0305-7925}},
  keywords     = {{Education}},
  number       = {{8}},
  pages        = {{1222--1223}},
  publisher    = {{Informa UK Limited}},
  title        = {{{European educational research (re)constructed: Institutional change in Germany, the United Kingdom, Norway, and the European Union}}},
  doi          = {{10.1080/03057925.2019.1665260}},
  volume       = {{50}},
  year         = {{2019}},
}

@inbook{31003,
  author       = {{Kullmann, Harry and Hülshoff, Andreas}},
  booktitle    = {{Zwischen Persönlichkeitsbildung und Leistungsentwicklung. Fachspezifische Zugänge zu inklusivem Unterricht im interdisziplinären Diskurs}},
  editor       = {{Baumert, Britta and Willen, Mareike}},
  isbn         = {{978-3-7815-2323-4}},
  pages        = {{49–69}},
  publisher    = {{Klinkhardt}},
  title        = {{{"In erster Linie Kopfsache"!? ‒ Einstellungen von Lehrkräften und Lehramtsstudierenden zu schulischer Inklusion: Theoretische Grundlagen und jüngere empirische Befunde }}},
  year         = {{2019}},
}

@inproceedings{66253,
  author       = {{Schonberger, Lea and Huang, Wen-Hung and Von Der Bruggen, Georg and Chen, Kuan-Hsun and Chen, Jian-Jia}},
  booktitle    = {{2018 IEEE 24th International Conference on Embedded and Real-Time Computing Systems and Applications (RTCSA)}},
  publisher    = {{IEEE}},
  title        = {{{Schedulability Analysis and Priority Assignment for Segmented Self-Suspending Tasks}}},
  doi          = {{10.1109/rtcsa.2018.00027}},
  year         = {{2019}},
}

@inproceedings{66254,
  author       = {{Chen, Kuan-Hsun and Von Der Bruggen, Georg and Chen, Jian-Jia}},
  booktitle    = {{2018 IEEE 24th International Conference on Embedded and Real-Time Computing Systems and Applications (RTCSA)}},
  publisher    = {{IEEE}},
  title        = {{{Analysis of Deadline Miss Rates for Uniprocessor Fixed-Priority Scheduling}}},
  doi          = {{10.1109/rtcsa.2018.00028}},
  year         = {{2019}},
}

@article{66245,
  abstract     = {{<jats:p>A mobile system that can detect viruses in real time is urgently needed, due to the combination of virus emergence and evolution with increasing global travel and transport. A biosensor called PAMONO (for Plasmon Assisted Microscopy of Nano-sized Objects) represents a viable technology for mobile real-time detection of viruses and virus-like particles. It could be used for fast and reliable diagnoses in hospitals, airports, the open air, or other settings. For analysis of the images provided by the sensor, state-of-the-art methods based on convolutional neural networks (CNNs) can achieve high accuracy. However, such computationally intensive methods may not be suitable on most mobile systems. In this work, we propose nanoparticle classification approaches based on frequency domain analysis, which are less resource-intensive. We observe that on average the classification takes 29    μ   s per image for the Fourier features and 17    μ   s for the Haar wavelet features. Although the CNN-based method scores 1–2.5 percentage points higher in classification accuracy, it takes 3370    μ   s per image on the same platform. With these results, we identify and explore the trade-off between resource efficiency and classification performance for nanoparticle classification of images provided by the PAMONO sensor.</jats:p>}},
  author       = {{Yayla, Mikail and Toma, Anas and Chen, Kuan-Hsun and Lenssen, Jan Eric and Shpacovitch, Victoria and Hergenröder, Roland and Weichert, Frank and Chen, Jian-Jia}},
  issn         = {{1424-8220}},
  journal      = {{Sensors}},
  number       = {{19}},
  publisher    = {{MDPI AG}},
  title        = {{{Nanoparticle Classification Using Frequency Domain Analysis on Resource-Limited Platforms}}},
  doi          = {{10.3390/s19194138}},
  volume       = {{19}},
  year         = {{2019}},
}

@article{66246,
  abstract     = {{<jats:p>A cause-effect chain is used to define the logical order of data dependent tasks, which is independent from the execution order of the jobs of the (periodic/sporadic) tasks. Analyzing the worst-case End-to-End timing behavior, associated to a cause-effect chain, is an important problem in embedded control systems. For example, the detailed timing properties of modern automotive systems are specified in the AUTOSAR Timing Extensions.</jats:p>
          <jats:p>
            In this paper, we present a formal End-to-End timing analysis for distributed systems. We consider the two most important End-to-End timing semantics, i.e., the button-to-action delay (termed as the
            <jats:italic>maximum reaction time</jats:italic>
            ) and the worst-case data freshness (termed as the
            <jats:italic>maximum data age</jats:italic>
            ). Our contribution is significant due to the consideration of the sporadic behavior of job activations, whilst the results in the literature have been mostly limited to periodic activations. The proof strategy shows the (previously unexplored) connection between the reaction time (data age, respectively) and immediate forward (backward, respectively) job chains. Our analytical results dominate the state of the art for sporadic task activations in distributed systems and the evaluations show a clear improvement for synthesized task systems as well as for a real world automotive benchmark setting.
          </jats:p>}},
  author       = {{Dürr, Marco and Brüggen, Georg Von Der and Chen, Kuan-Hsun and Chen, Jian-Jia}},
  issn         = {{1539-9087}},
  journal      = {{ACM Transactions on Embedded Computing Systems}},
  number       = {{5s}},
  pages        = {{1--24}},
  publisher    = {{Association for Computing Machinery (ACM)}},
  title        = {{{End-to-End Timing Analysis of Sporadic Cause-Effect Chains in Distributed Systems}}},
  doi          = {{10.1145/3358181}},
  volume       = {{18}},
  year         = {{2019}},
}

@unpublished{66322,
  abstract     = {{Motivated by the realizability problem for principal tropical divisors with a fixed ramification profile, we explore the tropical geometry of the double ramification locus in $\mathcal{M}_{g,n}$.There are two ways to define a tropical analogue of the double ramification locus: one as a locus of principal divisors, the other as a locus of finite effective ramified covers of a tree. We show that both loci admit a structure of a generalized cone complex in $M_{g,n}^{trop}$, with the latter contained in the former. We prove that the locus of principal divisors has cones of codimension zero in $M_{g,n}^{trop}$, while the locus of ramified covers has the expected codimension $g$. This solves the deformation-theoretic part of the realizability problem for principal divisors, reducing it to the so-called Hurwitz existence problem for covers of a fixed ramification type.}},
  author       = {{Ulirsch, Martin and Zakharov, Dmitry}},
  booktitle    = {{arXiv:1910.01499}},
  title        = {{{Tropical double ramification loci}}},
  year         = {{2019}},
}

@article{34437,
  abstract     = {{In oil-lubricated worm gears, all moving components cause power losses during operation. These losses depend, among other things, on the viscosity of the lubricant used, which in turn is determined by the temperature present in the gearbox. The dependency between the temperature and the power dissipation is mutual, and they influence each other. For the analysis of gearboxes under transient conditions, the relationship among operating conditions, power dissipation, and temperature must be considered. In this paper, a method for the analysis of these interrelationships is presented, which is based on the combination of tribological simulation and thermal networks. With the developed calculation model, the gearbox efficiency and the temperature over time can be estimated for arbitrary load cases. The calculation results are compared with measurements on a real gearbox.}},
  author       = {{Oehler, Manuel and Sauer, Bernd and Magyar, Balázs}},
  issn         = {{0742-4787}},
  journal      = {{Journal of Tribology}},
  number       = {{12}},
  title        = {{{Efficiency of Worm Gear Drives Under Transient Operating Conditions}}},
  doi          = {{10.1115/1.4044655}},
  volume       = {{141}},
  year         = {{2019}},
}

@article{66829,
  author       = {{Pöllmann, Andreas}},
  journal      = {{Research Intelligence}},
  number       = {{140}},
  pages        = {{20--21}},
  publisher    = {{BERA}},
  title        = {{{Investigating the realisation of intercultural capital in schools}}},
  year         = {{2019}},
}

@article{60916,
  author       = {{Göbel, Kerstin  and Schmelter, Lars and Frankemölle, Bernd and Frede, Georgia and Buret, Julie}},
  journal      = {{Lernende Schule}},
  pages        = {{28--31}},
  title        = {{{Wertschätzung und Förderung - Mehrsprachigkeitsorientierung im Fremdsprachenunterricht}}},
  volume       = {{86}},
  year         = {{2019}},
}

@book{66863,
  editor       = {{Christine, Biermann and Geist, Sabine and Kullmann, Harry and Textor, Annette}},
  isbn         = {{978-3-7815-2341-8}},
  publisher    = {{Julius Klinkhardt}},
  title        = {{{Inklusion im schulischen Alltag Praxiskonzepte und Forschungsergebnisse aus der Laborschule Bielefeld}}},
  volume       = {{10}},
  year         = {{2019}},
}

@inproceedings{67005,
  author       = {{Matthiesen, Bho and Zappone, Alessio and Jorswieck, Eduard A. and Debbah, Merouane}},
  booktitle    = {{2019 IEEE 20th International Workshop on Signal Processing Advances in Wireless Communications (SPAWC)}},
  publisher    = {{IEEE}},
  title        = {{{Deep Learning for Real-Time Energy-Efficient Power Control in Mobile Networks}}},
  doi          = {{10.1109/spawc.2019.8815516}},
  year         = {{2019}},
}

@inproceedings{67004,
  author       = {{Matthiesen, Bho and Hellings, Christoph and Jorswieck, Eduard A.}},
  booktitle    = {{2019 IEEE 20th International Workshop on Signal Processing Advances in Wireless Communications (SPAWC)}},
  publisher    = {{IEEE}},
  title        = {{{Energy Efficiency: Rate Splitting vs. Point-to-Point Codes in Gaussian Interference Channels}}},
  doi          = {{10.1109/spawc.2019.8815463}},
  year         = {{2019}},
}

@inproceedings{67003,
  author       = {{Matthiesen, Bho and Jorswieck, Eduard A.}},
  booktitle    = {{ICASSP 2019 - 2019 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP)}},
  publisher    = {{IEEE}},
  title        = {{{Global Energy Efficiency Maximization in Non-orthogonal Interference Networks}}},
  doi          = {{10.1109/icassp.2019.8683777}},
  year         = {{2019}},
}

@inproceedings{67006,
  author       = {{Hellings, Christoph and Matthiesen, Bho and Jorswieck, Eduard A. and Utschick, Wolfgang}},
  booktitle    = {{2019 27th European Signal Processing Conference (EUSIPCO)}},
  publisher    = {{IEEE}},
  title        = {{{Globally Optimal TIN Strategies with Time-Sharing in the MISO Interference Channel}}},
  doi          = {{10.23919/eusipco.2019.8903162}},
  year         = {{2019}},
}

@article{67002,
  author       = {{Matthiesen, Bho and Jorswieck, Eduard Axel}},
  issn         = {{1053-587X}},
  journal      = {{IEEE Transactions on Signal Processing}},
  number       = {{21}},
  pages        = {{5612--5627}},
  publisher    = {{Institute of Electrical and Electronics Engineers (IEEE)}},
  title        = {{{Efficient Global Optimal Resource Allocation in Non-Orthogonal Interference Networks}}},
  doi          = {{10.1109/tsp.2019.2941068}},
  volume       = {{67}},
  year         = {{2019}},
}

@inproceedings{2474,
  author       = {{Afifi, Haitham and Auroux, Sébastien and Karl, Holger}},
  publisher    = {{Proc. of IEEE Wireless Communications and Networking Conference (WCNC)}},
  title        = {{{MARVELO: Wireless Virtual Network Embedding for Overlay Graphs with Loops}}},
  year         = {{2018}},
}

@inproceedings{2476,
  author       = {{Shiferaw Heyi, Binyam and Karl, Holger}},
  publisher    = {{Proc. of IEEE Wireless Communications and Networking Conference (WCNC)}},
  title        = {{{Modelling Time-Limited Capacity of a Wireless Channel as aMarkov Reward Process}}},
  year         = {{2018}},
}

@inproceedings{2479,
  author       = {{Mohr, Felix and Wever, Marcel Dominik and Hüllermeier, Eyke and Faez, Amin}},
  booktitle    = {{SCC}},
  location     = {{San Francisco, CA, USA}},
  publisher    = {{IEEE}},
  title        = {{{(WIP) Towards the Automated Composition of Machine Learning Services}}},
  doi          = {{10.1109/SCC.2018.00039}},
  year         = {{2018}},
}

