Mike Gerdes
Publication record assembled from the DBLP archive of ranked conferences.
Papers indexed
9
Venues
7
Active years
2008–2014
Best venue rank
C
Where they publish
Papers
9 indexed papers, newest first.
| Year | Venue | Title | Authors |
|---|---|---|---|
| 2014 | ISORC | An Operating System for Safety-Critical Applications on Manycore Processors. | Florian Kluge, Mike Gerdes, Theo Ungerer |
| 2014 | RTCSA | Effects of structured parallelism by parallel design patterns on embedded hard real-time systems. | Ralf Jahr, Mike Gerdes, Theo Ungerer, Haluk Ozaktas, Christine Rochange, Pavel G. Zaykov |
| 2014 | RTNS | The Boot Process in Real-time Manycore Processors. | Florian Kluge, Mike Gerdes, Theo Ungerer |
| 2013 | DSD | parMERASA - Multi-core Execution of Parallelised Hard Real-Time Applications Supporting Analysability. | Theo Ungerer, Christian Bradatsch, Mike Gerdes, Florian Kluge, Ralf Jahr, Jrg Mische, Joo Fernandes, Pavel G. Zaykov, Zlatko Petrov, Bert Bddeker, Sebastian Kehr, Hans Regler, Andreas Hugl, Christine Rochange, Haluk Ozaktas, Hugues Cass, Armelle Bonenfant, Pascal Sainrat, Ian Broster, Nick Lay, David George, Eduardo Quiones, Milos Panic, Jaume Abella, Francisco J. Cazorla, Sascha Uhrig, Mathias Rohde, Arthur Pyka |
| 2013 | PPoPP | A pattern-supported parallelization approach. | Ralf Jahr, Mike Gerdes, Theo Ungerer |
| 2012 | DATE | Time analysable synchronisation techniques for parallelised hard real-time applications. | Mike Gerdes, Florian Kluge, Theo Ungerer, Christine Rochange, Pascal Sainrat |
| 2012 | RTCSA | The Split-Phase Synchronisation Technique: Reducing the Pessimism in the WCET Analysis of Parallelised Hard Real-Time Programs. | Mike Gerdes, Florian Kluge, Theo Ungerer, Christine Rochange |
| 2010 | ISORC | RTOS Support for Parallel Execution of Hard Real-Time Applications on the MERASA Multi-core Processor. | Julian Wolf, Mike Gerdes, Florian Kluge, Sascha Uhrig, Jrg Mische, Stefan Metzlaff, Christine Rochange, Hugues Cass, Pascal Sainrat, Theo Ungerer |
| 2008 | GI | Towards an automated detection of self-organizing behavior. | Wolfgang Trumler, Mike Gerdes |