Proceedings of the 8th iCC 2002 in Las Vegas, NV (USA)

Keynote:
Chris LeBlanc (National Instruments): CAN goes America
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Silicon
Patrick Richards (Microchip Technology): Intelligent CAN node implementation without using a microcontroller
Gerhard Goller, Philippe Malecha, Jean-Sebastien Berthy, Guy Mantelet (Atmel): From CAN to TTCAN - an ARM based CAN uController including an innovating implementation of the new protocol
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Hagen Graetz (FHG IMS), W.J. Fischer (Inst. of Semiconductor Technology and Microsystems): MultiSensor ASIC with CAN-controllerfor intelligent sensor systems
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Distributed Control
Prof. Dr. Konrad Etschberger, Christian Schlegel (Ixxat): CANopen-based distributed intelligent automation systems
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Juan Vicente Capella Hernández, Alberto Bonastre, Rafael Ors, J. Herrero (University of Valencia): Distribution of neural-based discrete control algorithms applied to home automation with CAN
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Prof. Ana Antunes, Fernando Morgado Dias, Escola de Setubal, Alexandre Manuel Mota (University of Aveiro): CAN-based real time adaptive distributed control
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Sam Broyles, Steve Corrigan (Texas Instruments): Using CAN arbitration for electrical-layer testing
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Physical Layer I
Johann Winter, Josef Gerner (Infineon): CAN transceivers in automotive applications-interfaces to a harsh environment
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Mutsumi Kikuchi, Takashi Sase, Masamitsu Inaba, Atsuo Watanabe, Noboru Akiyama, Fumio Murabayashi (Hitachi): On-chip 500V capacitive isolator for 1 Mbps CAN transceiver
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Industrial Application
Jan Bosteels (Advanced Motion Controls): Coordinated multi-axis motion control via CAN bus
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Martin Rostan, Beckhoff, Josef Langfermann (Lenze): High precision drive synchronisation with CANopen
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Physical Layer II
Prof. Dr. Helmut Beikirch, H. Voss, M. Kirchner (University of Rostock), H. Schultze (Selectron): CAN powerline application for rolling stock
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Hakan Sivencrona (University of Chalmers), Fredrik Bjoern, Goeran Nilsson (Sauer Danfoss): A novel algorithm for setting up a fully distributed CAN systems using REDCAN modules for fast fault recovery of bus failures
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Beijing Wang, Tony Maresh (DaimlerChrysler), Dan O`Brian (DGE): Gate keeper - bridging dissimilar automotive busses
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Scheduling
T. M. Querido, P. L. S. Aquino, A. Neves, V. Santos (Centro Federal de Educacao Tecnologica Brazil), Prof. Dr. Wolfhard Lawrenz (FH Braunschweig): CAN worst case study: A new approach
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Ernesto Martins, Jose Alberto Fonseca, Luis Almeida (University of Aveiro): A coprocessor for traffic scheduling and schedulability analysis in FTT-CAN
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Richard McLaughlin, Eva B. D`souza (University of Warwick), Dr. Kiah Hion Tang (Warwick Control Technologies): CAN bus performance analysis of deviceNet I/O connection services
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TTCAN
Dr. Bernd Mueller, Florian Hartwich, Thomas Fuehrer, Robert Hugel, Harald Weiler, Robert Bosch: Fault-tolerant TTCAN bnetworks
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Jose A. Fonseca, Fernanda Madureira Coutinho, Jorge Barreiros (Instituto Superior de Engenharia de Coimbra): Scheduling for a TTCAN network with a stochastic optimisation algorithm
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Florian Hartwich, Dr. Bernd Mueller, Thomas Fuehrer, Robert Hugel, Robert Bosch: Timing in the TTCAN network
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Middleware
Dr. Hasina Abdu, David Yoon (University of Michigan-Dearborn): Towards a middleware for distributed CAN applications
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Gerd Nusser (FH Reutlingen), Prof Dr. Gerhard Gruhler (STA Reutlingen), Prof. Dr. Wolfgang Kuechlin, (University of Tübingen): Automatic generation of control software components for CAN devices by using Java and XML
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Olaf Pfeiffer, Christian Keydel, Andrew Ayre (Embedded Systems Academy): A scalable, smart, self-learning router for CANopen
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Wireless
Dr. Lutz Rauchhaupt, (Ifak): Options of radio based industrial CAN communication
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Dr. Gilles Mercier, (University of Paris), Antoine Mercier, (Ecole Centrale d`Electronique): Feasability Study of Determinist Interconnection between Wired LAN and Wireless System, application to CAN and Bluetooth Technology
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Matthias Fuchs, (esd-electronics): BluetoothTM wireless technology meets CAN
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Higher Layer Protocol
Edward Heck, (Hydro Electronic Devices): Using SAE J-1939 CAN on mobile equipment for complete machine control
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Steven T. Majoewsky, (General Motors Defense), Colin Davies, (Radstone Technology): MILCAN adapting COTS CANbus to military vetronics
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Michael Simmonds, (Quantum Design): CANopen application example: Customizing CANopen for use in an automated laboratory instrument
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