@article{1712,
  author       = {{Ye, Ziliang and Zhang, Shuang and Wang, Yuan and Park, Yong-Shik and Zentgraf, Thomas and Bartal, Guy and Yin, Xiaobo and Zhang, Xiang}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{15}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Mapping the near-field dynamics in plasmon-induced transparency}}},
  doi          = {{10.1103/physrevb.86.155148}},
  volume       = {{86}},
  year         = {{2012}},
}

@article{17123,
  author       = {{von Lucke, Jörn and Herzberg, Johann and Kluge, Ulrike and vom Brocke, Jan and Müller, Oliver and Zimmermann, Hans-Dieter}},
  issn         = {{1556-5068}},
  journal      = {{SSRN Electronic Journal}},
  title        = {{{Open Societal Innovation: The Alemannic Definition}}},
  doi          = {{10.2139/ssrn.2195435}},
  year         = {{2012}},
}

@inproceedings{17124,
  author       = {{Janiesch, Christian and Fischer, Robin and Matzner, Martin and Müller, Oliver}},
  booktitle    = {{Workshop on Middleware for Service Oriented Computing}},
  isbn         = {{9781450310673}},
  pages        = {{1 -- 6}},
  title        = {{{Business activity management for service networks in cloud environments}}},
  doi          = {{10.1145/2093185.2093187}},
  year         = {{2012}},
}

@article{1713,
  author       = {{Liu, Yongmin and Palomba, Stefano and Park, Yongshik and Zentgraf, Thomas and Yin, Xiaobo and Zhang, Xiang}},
  issn         = {{1530-6984}},
  journal      = {{Nano Letters}},
  number       = {{9}},
  pages        = {{4853--4858}},
  publisher    = {{American Chemical Society (ACS)}},
  title        = {{{Compact Magnetic Antennas for Directional Excitation of Surface Plasmons}}},
  doi          = {{10.1021/nl302339z}},
  volume       = {{12}},
  year         = {{2012}},
}

@article{1714,
  author       = {{Lanzillotti-Kimura, N. D. and Zentgraf, Thomas and Zhang, X.}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{4}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Control of plasmon dynamics in coupled plasmonic hybrid mode microcavities}}},
  doi          = {{10.1103/physrevb.86.045309}},
  volume       = {{86}},
  year         = {{2012}},
}

@article{1715,
  author       = {{Ishikawa, Atsushi and Oulton, Rupert F. and Zentgraf, Thomas and Zhang, Xiang}},
  issn         = {{1098-0121}},
  journal      = {{Physical Review B}},
  number       = {{15}},
  publisher    = {{American Physical Society (APS)}},
  title        = {{{Slow-light dispersion by transparent waveguide plasmon polaritons}}},
  doi          = {{10.1103/physrevb.85.155108}},
  volume       = {{85}},
  year         = {{2012}},
}

@inproceedings{10636,
  author       = {{Boschmann, Alexander and Platzner, Marco}},
  booktitle    = {{Proc. IEEE Int. Conf. Eng. Med. Biolog. (EMBC)}},
  title        = {{{Reducing classification accuracy degradation of pattern recognition based myoelectric control caused by electrode shift using a high density electrode array}}},
  year         = {{2012}},
}

@misc{10650,
  author       = {{Dridger, Denis}},
  publisher    = {{Paderborn University}},
  title        = {{{Design and Implementation of a Nanophotonics Simulation Personality for the Convey HC-1 Hybrid Core Computer}}},
  year         = {{2012}},
}

@phdthesis{10652,
  abstract     = {{The paradigm shift towards many-core parallelism is accompanied by two fundamental questions: how should the many processors on a single die communicate to each other and what are suitable programming models for these novel architectures? In this thesis, the author tackles both questions by reviewing the reconfigurable mesh model of massively parallel computation for many-cores.

The book presents the design, implementation and evaluation of a many-core architecture that is based on the execution principles and communication infrastructure of the reconfigurable mesh. This work fundamentally rests on FPGA implementations and shows that reconfigurable mesh processors with hundreds of autonomous cores are feasible. Several case studies demonstrate the effectiveness of programming and illustrate why the reconfigurable mesh is a promising model for many-cores.}},
  author       = {{Giefers, Heiner}},
  isbn         = {{978-3-8325-3165-2}},
  pages        = {{159}},
  publisher    = {{Logos Verlag Berlin GmbH}},
  title        = {{{Design and Programming of Reconfigurable Mesh based Many-Cores}}},
  year         = {{2012}},
}

@misc{10658,
  author       = {{Graf, Tobias}},
  publisher    = {{Paderborn University}},
  title        = {{{Adaptive Playouts in der Monte-Carlo Spielbaumsuche am Anwendungsfall Go}}},
  year         = {{2012}},
}

@misc{10667,
  author       = {{Hangmann, Hendrik}},
  publisher    = {{Paderborn University}},
  title        = {{{Generating Adjustable Temperature Gradients on modern FPGAs}}},
  year         = {{2012}},
}

@article{10685,
  author       = {{Kaufmann, Paul and Glette, Kyrre and Platzner, Marco and Torresen, Jim}},
  journal      = {{International Journal of Adaptive, Resilient and Autonomic Systems (IJARAS)}},
  number       = {{4}},
  pages        = {{17--31}},
  publisher    = {{IGI Global}},
  title        = {{{Compensating Resource Fluctuations by Means of Evolvable Hardware: The Run-Time Reconfigurable Functional Unit Row Classifier Architecture}}},
  doi          = {{10.4018/jaras.2012100102}},
  volume       = {{3}},
  year         = {{2012}},
}

@misc{10723,
  author       = {{Platzner, Marco and Boschmann, Alexander and Kaufmann, Paul}},
  pages        = {{6--11}},
  title        = {{{Wieder natürlich gehen und greifen}}},
  year         = {{2012}},
}

@misc{10734,
  author       = {{Schmitz, Henning}},
  publisher    = {{Paderborn University}},
  title        = {{{Stereo Matching on a HC-1 Hybrid Core Computer}}},
  year         = {{2012}},
}

@misc{10747,
  author       = {{Topmöller, Christoph}},
  publisher    = {{Paderborn University}},
  title        = {{{Entwicklung eines Picoblaze Compilers mit dem Gentle Compiler Construction System}}},
  year         = {{2012}},
}

@misc{10754,
  author       = {{Wistuba, Martin}},
  publisher    = {{Paderborn University}},
  title        = {{{Analysis of Pattern Based Model Design and Learning in Computer-Go}}},
  year         = {{2012}},
}

@inproceedings{11741,
  author       = {{Chinaev, Aleksej and Haeb-Umbach, Reinhold}},
  booktitle    = {{Speech Communication; 10. ITG Symposium; Proceedings.}},
  title        = {{{Quality Analysis and Optimization of the MAP-based Noise Power Spectral Density Tracker}}},
  year         = {{2012}},
}

@inproceedings{11745,
  abstract     = {{In this paper we present a novel noise power spectral density tracking algorithm and its use in single-channel speech enhancement. It has the unique feature that it is able to track the noise statistics even if speech is dominant in a given time-frequency bin. As a consequence it can follow non-stationary noise superposed by speech, even in the critical case of rising noise power. The algorithm requires an initial estimate of the power spectrum of speech and is thus meant to be used as a postprocessor to a first speech enhancement stage. An experimental comparison with a state-of-the-art noise tracking algorithm demonstrates lower estimation errors under low SNR conditions and smaller fluctuations of the estimated values, resulting in improved speech quality as measured by PESQ scores.}},
  author       = {{Chinaev, Aleksej and Krueger, Alexander and Tran Vu, Dang Hai and Haeb-Umbach, Reinhold}},
  booktitle    = {{37th International Conference on Acoustics, Speech and Signal Processing (ICASSP 2012)}},
  keywords     = {{MAP parameter estimation, noise power estimation, speech enhancement}},
  title        = {{{Improved Noise Power Spectral Density Tracking by a MAP-based Postprocessor}}},
  year         = {{2012}},
}

@inbook{11844,
  author       = {{Krueger, Alexander and Haeb-Umbach, Reinhold}},
  booktitle    = {{Techniques for Noise Robustness in Automatic Speech Recognition}},
  publisher    = {{Wiley}},
  title        = {{{Reverberant Speech Recognition}}},
  year         = {{2012}},
}

@inproceedings{11849,
  abstract     = {{In this contribution we investigate the effectiveness of Bayesian feature enhancement (BFE) on a medium-sized recognition task containing real-world recordings of noisy reverberant speech. BFE employs a very coarse model of the acoustic impulse response (AIR) from the source to the microphone, which has been shown to be effective if the speech to be recognized has been generated by artificially convolving nonreverberant speech with a constant AIR. Here we demonstrate that the model is also appropriate to be used in feature enhancement of true recordings of noisy reverberant speech. On the Multi-Channel Wall Street Journal Audio Visual corpus (MC-WSJ-AV) the word error rate is cut in half to 41.9 percent compared to the ETSI Standard Front-End using as input the signal of a single distant microphone with a single recognition pass.}},
  author       = {{Krueger, Alexander and Walter, Oliver and Leutnant, Volker and Haeb-Umbach, Reinhold}},
  booktitle    = {{Proc. Interspeech}},
  title        = {{{Bayesian Feature Enhancement for ASR of Noisy Reverberant Real-World Data}}},
  year         = {{2012}},
}

