@inproceedings{16042,
  author       = {{Triebus, Marcel and Tröster, Thomas and Camberg, Alan Adam and Bienia, S. and Dröder, K.}},
  booktitle    = {{15. Deutsches LS-Dyna Forum}},
  location     = {{Bamberg}},
  title        = {{{Modelling the Interface of Hybrid Metal-FRP Components Joint by Form Closures}}},
  year         = {{2018}},
}

@inproceedings{16043,
  author       = {{Camberg, Alan Adam and Tröster, Thomas and Schneidt , A. and Sotirov , N. and Tölle, J.}},
  booktitle    = {{15. Deutsches LS-Dyna Forum}},
  location     = {{Bamberg}},
  title        = {{{The influence of damage accumulation on failure prediction: a comparative assessment of *MAT_224 and *MAT_024 + GISSMO for the application in non-isothermal sheet metal forming}}},
  year         = {{2018}},
}

@article{16045,
  author       = {{Camberg, Alan Adam}},
  issn         = {{2366-8024}},
  journal      = {{Carbon Composites Magazin}},
  number       = {{2}},
  pages        = {{15--16}},
  title        = {{{Top-down-Entwicklung von Faser-Metall-Laminaten auf Grundlage von Gesamtfahrzeugsimulationen}}},
  year         = {{2018}},
}

@inproceedings{16056,
  author       = {{Schweizer, Swetlana and Tröster, Thomas}},
  location     = {{Siegen}},
  title        = {{{Holz als Werkstoff im Automobil}}},
  year         = {{2018}},
}

@inproceedings{16057,
  author       = {{Wang, Z. and Tröster, Thomas}},
  location     = {{Siegen}},
  title        = {{{Herstellung hybrider Strukturkomponenten in einem modifizierten VARTM-Prozess}}},
  year         = {{2018}},
}

@article{16101,
  abstract     = {{<jats:title>Abstract</jats:title><jats:p>The nonorthogonality of coherent states is a fundamental property which prevents them from being perfectly and deterministically discriminated. Here, we present an experimentally feasible protocol for the probabilistic orthogonalisation of a pair of coherent states, independent of their amplitude and phase. In contrast to unambiguous state discrimination, a successful operation of our protocol is heralded without measuring the states. As such, they remain suitable for further manipulation and the obtained orthogonal states serve as a discretevariable basis. Therefore, our protocol doubles as a simple continuous-to-discrete variable converter, which may find application in hybrid continuous-discrete quantum information processing protocols.</jats:p>}},
  author       = {{Kruse, Regina and Silberhorn, Christine and Bartley, Tim}},
  issn         = {{2299-114X}},
  journal      = {{Quantum Measurements and Quantum Metrology}},
  number       = {{1}},
  title        = {{{Heralded orthogonalisation of coherent states and their conversion to discrete-variable superpositions}}},
  doi          = {{10.1515/qmetro-2017-0005}},
  volume       = {{4}},
  year         = {{2018}},
}

@unpublished{16292,
  abstract     = {{In a recent article, we presented a framework to control nonlinear partial
differential equations (PDEs) by means of Koopman operator based reduced models
and concepts from switched systems. The main idea was to transform a control
system into a set of autonomous systems for which the optimal switching
sequence has to be computed. These individual systems can be approximated very
efficiently by reduced order models obtained from data, and one can guarantee
equality of the full and the reduced objective function under certain
assumptions. In this article, we extend these results to continuous control
inputs using convex combinations of multiple Koopman operators corresponding to
constant controls, which results in a bilinear control system. Although
equality of the objectives can be carried over when the PDE depends linearly on
the control, we show that this approach is also valid in other scenarios using
several flow control examples of varying complexity.}},
  author       = {{Peitz, Sebastian}},
  booktitle    = {{arXiv:1801.06419}},
  title        = {{{Controlling nonlinear PDEs using low-dimensional bilinear approximations  obtained from data}}},
  year         = {{2018}},
}

@unpublished{16293,
  abstract     = {{Kernel transfer operators, which can be regarded as approximations of
transfer operators such as the Perron-Frobenius or Koopman operator in
reproducing kernel Hilbert spaces, are defined in terms of covariance and
cross-covariance operators and have been shown to be closely related to the
conditional mean embedding framework developed by the machine learning
community. The goal of this paper is to show how the dominant eigenfunctions of
these operators in combination with gradient-based optimization techniques can
be used to detect long-lived coherent patterns in high-dimensional time-series
data. The results will be illustrated using video data and a fluid flow
example.}},
  author       = {{Klus, Stefan and Peitz, Sebastian and Schuster, Ingmar}},
  booktitle    = {{arXiv:1805.10118}},
  title        = {{{Analyzing high-dimensional time-series data using kernel transfer  operator eigenfunctions}}},
  year         = {{2018}},
}

@article{16313,
  author       = {{Burkhardt, Lukas and Mueller, Carsten and Groß, Oliver A. and Sun, Yu and Sitzmann, Helmut and Bauer, Matthias}},
  issn         = {{0020-1669}},
  journal      = {{Inorganic Chemistry}},
  pages        = {{6609--6618}},
  title        = {{{The Bonding Situation in the Dinuclear Tetra-Hydrido Complex [{5CpFe}2(μ-H)4] Revisited by Hard X-Ray Spectroscopy}}},
  doi          = {{10.1021/acs.inorgchem.8b03032}},
  year         = {{2018}},
}

@article{16316,
  author       = {{Zimmer, Peter and Burkhardt, Lukas and Schepper, Rahel and Zheng, Kaibo and Gosztola, David and Neuba, Adam and Flörke, Ulrich and Wölper, Christoph and Schoch, Roland and Gawelda, Wojciech and Canton, Sophie E. and Bauer, Matthias}},
  issn         = {{1434-1948}},
  journal      = {{European Journal of Inorganic Chemistry}},
  pages        = {{5203--5214}},
  title        = {{{Towards Noble-Metal-Free Dyads: Ground and Excited State Tuning by a Cobalt Dimethylglyoxime Motif Connected to an Iron N-Heterocyclic Carbene Photosensitizer}}},
  doi          = {{10.1002/ejic.201800946}},
  year         = {{2018}},
}

@phdthesis{16328,
  author       = {{Zimmer, Peter}},
  title        = {{{	 Eisenbasierte Photosensitizer für die Photokatalyse / vorgelegt von Dipl.-Chem. Peter Zimmer ; [Prof. Dr. Thomas Kühne (Vorsitz), Prof. Dr. Matthias Bauer (Erstgutachter), Jun.-Prof. Dr. Stephan Hohloch (Zweitgutachter), Priv.-Doz. Dr. Hans Egold]}}},
  doi          = {{10.17619/UNIPB/1-426}},
  year         = {{2018}},
}

@phdthesis{16330,
  author       = {{Schepper, Rahel}},
  title        = {{{High energy resolution X-ray absorption and emission based studies on the mononuclear spin crossover complex [Fe(L-N4Bn2)(NCS)2] / vorgelegt von Dipl.-Chem. Rahel Schepper ; [Prof. Dr.-Ing. Hans-Joachim Warnecke (Kommissionsvorsitz), Prof. Dr. Matthias Bauer (Erstgutachter), Jun.-Prof. Dr. Stephan Hohloch (Zweitgutachter), Prof. Dr. Thomas Kühne (Drittprüfer)]}}},
  doi          = {{10.17619/UNIPB/1-421 }},
  year         = {{2018}},
}

@article{16366,
  author       = {{Dressler, Falko and Klingler, Florian and Segata, Michele and Cigno, Renato Lo}},
  issn         = {{0018-9219}},
  journal      = {{Proceedings of the IEEE}},
  pages        = {{436--446}},
  title        = {{{Cooperative Driving and the Tactile Internet}}},
  doi          = {{10.1109/jproc.2018.2863026}},
  year         = {{2018}},
}

@article{16367,
  author       = {{Klingler, Florian and Cohen, Reuven and Sommer, Christoph and Dressler, Falko}},
  issn         = {{1536-1233}},
  journal      = {{IEEE Transactions on Mobile Computing}},
  pages        = {{534--545}},
  title        = {{{Bloom Hopping: Bloom Filter Based 2-Hop Neighbor Management in VANETs}}},
  doi          = {{10.1109/tmc.2018.2840123}},
  year         = {{2018}},
}

@article{16368,
  author       = {{Klingler, Florian and Dressler, Falko and Sommer, Christoph}},
  issn         = {{0018-9545}},
  journal      = {{IEEE Transactions on Vehicular Technology}},
  pages        = {{7664--7676}},
  title        = {{{The Impact of Head of Line Blocking in Highly Dynamic WLANs}}},
  doi          = {{10.1109/tvt.2018.2837157}},
  year         = {{2018}},
}

@article{16369,
  author       = {{Turcanu, Ion and Klingler, Florian and Sommer, Christoph and Baiocchi, Andrea and Dressler, Falko}},
  issn         = {{0140-3664}},
  journal      = {{Computer Communications}},
  pages        = {{54--64}},
  title        = {{{Duplicate suppression for efficient floating car data collection in heterogeneous LTE-DSRC vehicular networks}}},
  doi          = {{10.1016/j.comcom.2018.03.015}},
  year         = {{2018}},
}

@article{16370,
  author       = {{Heinovski, Julian and Klingler, Florian and Dressler, Falko and Sommer, Christoph}},
  issn         = {{0140-3664}},
  journal      = {{Computer Communications}},
  pages        = {{84--92}},
  title        = {{{A simulative analysis of the performance of IEEE 802.11p and ARIB STD-T109}}},
  doi          = {{10.1016/j.comcom.2018.03.016}},
  year         = {{2018}},
}

@inproceedings{16378,
  author       = {{Klingler, Florian and Blobel, Johannes and Dressler, Falko}},
  booktitle    = {{2018 15th International Symposium on Wireless Communication Systems (ISWCS)}},
  isbn         = {{9781538650059}},
  title        = {{{Agriculture meets IEEE 802.11p: A Feasibility Study}}},
  doi          = {{10.1109/iswcs.2018.8491239}},
  year         = {{2018}},
}

@inproceedings{16379,
  author       = {{Loewen, Stefan and Klingler, Florian and Sommer, Christoph and Dressler, Falko}},
  booktitle    = {{2017 IEEE Vehicular Networking Conference (VNC)}},
  isbn         = {{9781538609866}},
  title        = {{{Backwards compatible extension of CAMs/DENMs for improved bike safety on the road}}},
  doi          = {{10.1109/vnc.2017.8275657}},
  year         = {{2018}},
}

@inproceedings{16380,
  author       = {{Pannu, Gurjashan Singh and Klingler, Florian and Sommer, Christoph and Dressler, Falko}},
  booktitle    = {{2017 IEEE Vehicular Networking Conference (VNC)}},
  isbn         = {{9781538609866}},
  title        = {{{QQDCA: Adapting IEEE 802.11 EDCA for unicast transmissions at high topology dynamics}}},
  doi          = {{10.1109/vnc.2017.8275619}},
  year         = {{2018}},
}

