@phdthesis{24514,
  author       = {{Wolff, Carsten}},
  publisher    = {{Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}},
  title        = {{{Parallele Simulation großer pulscodierter neuronaler Netze}}},
  volume       = {{95}},
  year         = {{2001}},
}

@phdthesis{24583,
  author       = {{Henke, Andreas}},
  publisher    = {{Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}},
  title        = {{{Modellierung, Simulation und Optimierung piezoelektrischer Stellsysteme}}},
  volume       = {{96}},
  year         = {{2001}},
}

@inproceedings{27932,
  author       = {{Schlegel-Matthies, Kirsten}},
  booktitle    = {{Salutogenese und Ernährungsbildung. Abstracts des Workshops vom 9. und 10. März 2001}},
  title        = {{{Salutogenese und haushaltsbezogene Bildung – didaktische Folgerungen}}},
  year         = {{2001}},
}

@article{27933,
  author       = {{Schlegel-Matthies, Kirsten}},
  journal      = {{Haushalt & Bildung}},
  number       = {{4}},
  pages        = {{41--49}},
  title        = {{{Lebensstile von Jugendlichen und Umgang mit Geld. Folgerungen für haushaltsbezogene Bildung}}},
  year         = {{2001}},
}

@inproceedings{2141,
  author       = {{Berenbrink, Petra and Brinkmann, André and Scheideler, Christian}},
  booktitle    = {{PDP}},
  pages        = {{227----234}},
  publisher    = {{IEEE Computer Society}},
  title        = {{{SIMLAB-A Simulation Environment for Storage Area Networks}}},
  year         = {{2001}},
}

@article{23731,
  abstract     = {{<jats:p>
            On 22 May 2000, the factorization of a pseudorandom polynomial of degree 1 048 543 over the binary field Z
            <jats:sub>2</jats:sub>
            was completed on a 4-processor Linux PC, using roughly 100 CPU-hours. The basic approach is a combination of the factorization software BIPOLAR and a parallel version of Cantor's multiplication algorithm. The PUB-library (Paderborn University BSP library) is used for the implementation of the parallel communication.
          </jats:p>}},
  author       = {{Bonorden, Olaf and von zur Gathen, Joachim and Gerhard, Jürgen and Müller, Olaf}},
  issn         = {{0163-5824}},
  journal      = {{ACM SIGSAM Bulletin}},
  pages        = {{16--18}},
  title        = {{{Factoring a binary polynomial of degree over one million}}},
  doi          = {{10.1145/504331.504333}},
  year         = {{2001}},
}

@inproceedings{18370,
  abstract     = {{We present a new approximate occlusion-culling algorithm that in contrast to other algorithms, manages the objects of the scene in a 3D-sectorgraph. For generating a frame, as far as possible only the visible objects are rendered that can be found quickly by an edge of the graph. The algorithm allows a real-time navigation with over 20 frames per second in complex scenes consisting of over 10 millions of polygons. Moreover, approximation errors are very low.}},
  author       = {{Klein, Jan and Fischer, Matthias}},
  booktitle    = {{Proc. of 3. GI-Informatiktage 2001}},
  pages        = {{275 -- 278}},
  title        = {{{Occlusion Culling for Virtual Environments based on the 3D-Sectorgraph}}},
  year         = {{2001}},
}

@inproceedings{8127,
  author       = {{Krauter, Stefan}},
  booktitle    = {{Proceedings of the 7th International Building Performance Simulation Association Conference, Rio de Janeiro (Brasilien), 13.–15. August 2001, S. 619–626}},
  title        = {{{New façade system consisting of combined photovoltaic and solar thermal generators with building insulation}}},
  year         = {{2001}},
}

@inproceedings{8128,
  author       = {{Krauter, Stefan and Ochs, F. and Depping, T.}},
  booktitle    = {{Proceedings of the 17th European Photovoltaic Solar Energy Conference and Exhibition, München (Deutschland), 22.–26. Oktober 2001, Band 3, S. 2598–2599}},
  title        = {{{Satellite Monitoring of Remote PV-Systems}}},
  year         = {{2001}},
}

@inproceedings{8129,
  author       = {{Ochs, F. and Krauter, Stefan}},
  booktitle    = {{Proceedings of the 17th European Photovoltaic Solar Energy Conference and Exhibition, München (Deutschland), 22.–26. Oktober 2001, Band 3, S. 2595–2597}},
  title        = {{{Development of an All-in-one Solar Home System}}},
  year         = {{2001}},
}

@inproceedings{8132,
  author       = {{Krauter, Stefan and Valentin, G.}},
  booktitle    = {{Proceedings of the 18th Conference on Passive and Low Energy Architecture, Florianópolis (Brasilien), 7.–9. November 2001, Band 1, S. 283–285}},
  title        = {{{Software for Simulation of Photovoltaic Systems in Buildings}}},
  year         = {{2001}},
}

@techreport{4662,
  author       = {{Beran, Jan and Feng, Yuanhua}},
  title        = {{{Supplement to the paper "Iterative plug-in algorithms for SEMIFAR models - definition, convergence and asymptotic properties" - Detailed simulation results}}},
  year         = {{2001}},
}

@inbook{16555,
  author       = {{Dellnitz, Michael and Froyland, Gary and Junge, Oliver}},
  booktitle    = {{Ergodic Theory, Analysis, and Efficient Simulation of Dynamical Systems}},
  isbn         = {{9783642625244}},
  title        = {{{The Algorithms Behind GAIO — Set Oriented Numerical Methods for Dynamical Systems}}},
  doi          = {{10.1007/978-3-642-56589-2_7}},
  year         = {{2001}},
}

@inbook{27934,
  author       = {{Bigga, Regine}},
  booktitle    = {{Arbeitslehre 2001. Bilanzen - Initiativen - Perspektiven. }},
  editor       = {{Schudy, Jörg}},
  pages        = {{65--73}},
  publisher    = {{Baltmannsweiler}},
  title        = {{{Jugend ohne ARBEITsLEHRE? Bilanz und Perspektiven schulischer Berufsorientierung. }}},
  year         = {{2001}},
}

@inproceedings{39411,
  abstract     = {{Rapid prototyping based on 3D models is well accepted for several applications. This article addresses the application of animated virtual 3D prototypes for the development of computer-based systems supporting early collaboration of the system designer with the external customer. Our methodology seamlessly integrates illustration through 3D animation with the main tasks of computer-based real-time systems development, i.e., implementation and verification. The approach is outlined by the example of the design of a flexible manufacturing system.}},
  author       = {{Flake, Stephan and Geiger, Christian and Müller, Wolfgang and Ruf, Jürgen}},
  booktitle    = {{Proceedings of IEEE KMN 2001}},
  isbn         = {{0-7695-1269-0}},
  keywords     = {{Virtual prototyping, Animation, Collaboration, System analysis and design, Feedback, Application software, Power system modeling, Handicapped aids, Process design, Contracts}},
  title        = {{{Customer-Oriented Systems Design through Virtual Prototyps}}},
  doi          = {{10.1109/ENABL.2001.953425}},
  year         = {{2001}},
}

@inproceedings{39421,
  abstract     = {{We present a rigorous but transparent semantics definition of SystemC that covers method, thread, and clocked thread behavior as well as their interaction with the simulation kernel process. The semantics includes watching statements, signal assignment, and wait statements as they are introduced in SystemC V1.O. We present our definition in form of distributed Abstract State Machines (ASMs) rules reflecting the view given in the SystemC User's Manual and the reference implementation. We mainly see our formal semantics as a concise, unambiguous, high-level specification for SystemC-based implementations and for standardization. Additionally, it can be used as a sound basis to investigate SystemC interoperability with Verilog and VHDL.}},
  author       = {{Müller, Wolfgang and Ruf, Jürgen and Hoffmann, D. W. and Gerlach, Joachim and Kropf, Thomas and Rosenstiehl, W.}},
  booktitle    = {{Proceedings of the Design, Automation, and Test in Europe (DATE’01)}},
  isbn         = {{0-7695-0993-2}},
  keywords     = {{Yarn, Formal verification, Kernel, Hardware design languages, Electronic design automation and methodology, Algebra, Computational modeling, Logic functions, Computer languages, Clocks}},
  publisher    = {{IEEE}},
  title        = {{{The Simulation Semantics of SystemC}}},
  doi          = {{10.1109/DATE.2001.915002}},
  year         = {{2001}},
}

@inproceedings{64543,
  author       = {{Hofmann, Martin and Gerhardt, Nils Christopher and Wagner, Anke and Ellmers, Christoph and Höhnsdorf, Falko and Koch, Jörg and Leu, Simone and Stolz, Wolfgang and Rühle, Wolfgang W.}},
  booktitle    = {{Physics and simulation of optoelectronic devices IX}},
  pages        = {{256 -- 266}},
  title        = {{{Emission dynamics of (GaIn)(NAs)/GaAs lasers emitting at 1.3 μm}}},
  doi          = {{10.1117/12.432573}},
  year         = {{2001}},
}

@article{27987,
  author       = {{Buyken, Anette and Toeller, M and Heitkamp, G and Irsigler, K and Holler, C and Santeusanio, F and Stehle, P and Fuller, JH}},
  issn         = {{0742-3071}},
  journal      = {{Diabet Med}},
  number       = {{5}},
  pages        = {{351--359}},
  title        = {{{Carbohydrate sources and glycaemic control in Type 1 diabetes mellitus. EURODIAB IDDM Complications Study Group.}}},
  doi          = {{10.1046/j.1464-5491.2000.00283.x}},
  volume       = {{17}},
  year         = {{2000}},
}

@inproceedings{21783,
  author       = {{Volbracht, Sabine and Domik, Gitta}},
  booktitle    = {{Virtual Environments 2000}},
  editor       = {{Mulder, Jurriaan and van Liere, Robert}},
  isbn         = {{978-3-7091-6785-4}},
  pages        = {{55--64}},
  publisher    = {{Springer Vienna}},
  title        = {{{Developing Effective Navigation Techniques in Virtual 3D Environments}}},
  year         = {{2000}},
}

@inproceedings{8919,
  abstract     = {{the vibration amplitudes of bladed disk assemblies can be reduced significantly by means of friction damping devices such as shrouds, damping wires and interblade Friction dampers. in practice, interblade Friction dampers are applied in rotating arrangements with various geometries showing curved or flat surfaces like so-called wedge-shaped dampers. this paper is focusing on a computation method to predict the dynamical behaviour of turbine blades with Friction dampers including both, curved and wedge-shaped dampers with hertzian and non-herutian contact conditions, respectively. the presented computation method uses a 3d contact model to calculate the contact forces, including normal and tangential stiffnesses, roughness and microslip effects. the relative displacements in the contact area can be expressed by means of 6 dof of the blade platforms and 6 rigid body dof of the damper including translational and rotational displacements. the relative displacement of the Friction damper with respect to the adjacent blades can be derived from the contact kinematics of the blade-damper-blade system and the equations of motion of the Friction damper. thus, the model can be applied to investigate spatial motions of the bladed disk assembly including bending and torsional vibrations. a comparison of different Friction damper designs with respect to an optimal damper geometry and damper mass is presented. the advantages and disadvantages of each design will be discussed. experimental results are shown to validate the developed computation method.}},
  author       = {{Panning, Lars and Sextro, Walter and Popp, Karl}},
  booktitle    = {{International Gas Turbine \& Aeroengine Congress \& Exhibition, ASME}},
  pages        = {{1--8}},
  title        = {{{Optimization of Interblade Friction Damper}}},
  year         = {{2000}},
}

