DocumentCode
3674709
Title
The AXIOM Software Layers
Author
Carlos Alvarez;Eduard Ayguade;Javier Bueno;Antonio Filgueras;Daniel Jimenez-Gonzalez;Xavier Martorell;Nacho Navarro;Dimitris Theodoropoulos;Dionisios N. Pnevmatikatos;Davide Catani;Claudio Scordino;Paolo Gai;Carlos Segura;Carles Fernandez;David Oro;Javier
Author_Institution
Comput. Sci. Dept., Barcelona Supercomput. Center, Barcelona, Spain
fYear
2015
Firstpage
117
Lastpage
124
Abstract
People and objects will soon share the same digital network for information exchange in a world named as the age of the cyber-physical systems. The general expectation is that people and systems will interact in real-time. This poses pressure onto systems design to support increasing demands on computational power, while keeping a low power envelop. Additionally, modular scaling and easy programmability are also important to ensure these systems to become widespread. The whole set of expectations impose scientific and technological challenges that need to be properly addressed. The AXIOM project (Agile, eXtensible, fast I/O Module) will research new hardware/software architectures for cyber-physical systems to meet such expectations. The technical approach aims at solving fundamental problems to enable easy programmability of heterogeneous multi-core multi-board systems. AXIOM proposes the use of the task-based OmpSs programming model, leveraging low-level communication interfaces provided by the hardware. Modular scalability will be possible thanks to a fast interconnect embedded into each module. To this aim, an innovative ARM and FPGA-based board will be designed, with enhanced capabilities for interfacing with the physical world. Its effectiveness will be demonstrated with key scenarios such as Smart Video-Surveillance and Smart Living/Home (domotics).
Keywords
"Field programmable gate arrays","Runtime","Programming","Smart homes","Software","Real-time systems"
Publisher
ieee
Conference_Titel
Digital System Design (DSD), 2015 Euromicro Conference on
Type
conf
DOI
10.1109/DSD.2015.52
Filename
7302259
Link To Document