Multi Core Execution of Parallelised Hard Real Time Applications Supporting Anal...
Multi Core Execution of Parallelised Hard Real Time Applications Supporting Analysability
Engineers who design hard real-time embedded systems express a need for several times the performance available today while keeping safety as major criterion. A breakthrough in performance is expected by parallelising hard real-ti...
ver más
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Proyectos interesantes
TIN2014-60404-JIN
PROBABILISTIC TIMING ANALYSIS OF HIGH-PERFORMANCE AND RELIAB...
206K€
Cerrado
T-CREST
Time predictable Multi Core Architecture for Embedded System...
4M€
Cerrado
MERASA
Multi core Execution of Hard real time Applications Supporti...
3M€
Cerrado
JCI-2009-05455
Procesadores empotrados multi-nucleo y multi-hilo para appli...
101K€
Cerrado
CERTAINTY
CErtification of Real Time Applications desIgNed for mixed c...
4M€
Cerrado
PaPP
Portable and Predictable Performance on Heterogeneous Embedd...
10M€
Cerrado
Información proyecto parMERASA
Líder del proyecto
UNIVERSITAET AUGSBURG
No se ha especificado una descripción o un objeto social para esta compañía.
Presupuesto del proyecto
5M€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
Engineers who design hard real-time embedded systems express a need for several times the performance available today while keeping safety as major criterion. A breakthrough in performance is expected by parallelising hard real-time applications. parMERASA targets a timing analysable system of parallel hard real-time applications running on a scalable multi-core processor. Several new scientific and technical challenges will be tackled in the light of timing analysability: parallelisation techniques for industrial applications, operating system virtualisation and efficient synchronisation mechanisms, guarantee of worst-case execution times (WCET) of parallelised applications, verification and profiling tools, and scalable memory hierarchies together with I/O systems for multi-core processors.The output of parMERASA will be at least an eightfold performance improvement of the WCET for parallelised legacy applications in avionics, automotive, and construction machinery domains in comparison to the original sequential versions. The execution platform, i.e. the parMERASA multi-core processor and system software, will provide temporal and spatial isolation between tasks and scale up to 64 cores. A software engineering approach will be taken targeting at least four parallel execution patterns that are analysable. Verification and profiling tools will be developed, and we aim to provide at least four recommendations to enhance both automotive and avionic standards.parMERASA will impact new products for transportation systems and industrial applications. It will impact standards by introducing parallel execution and time predictability as key features. This will contribute to reinforce the EC position in the field of critical computing systems and yield an advantage for European industry in the highly competitive avionics, automotive, and construction machinery markets.