| ACROSS |  | ACROSS is a research project that aims to develop and implement an ARTEMIS cross-domain reference architecture for embedded systems based on the architecture blueprint developed in the European FP7 project GENESYS. |
| ASAM |  | ASAM addresses a uniform process of automatic architecture synthesis and application mapping for heterogeneous, multi-processor embedded systems, defining a new and unified design methodology, as well as related synthesis and prototyping tool-chains. For this, a highly efficient automatic synthesis flow will be created from the algorithmic specification down to its hardware/software implementation at the circuit/code level. |
| CHIRON |  | |
| ESONIA |  | eSONIA means greater predictability of plant behaviour and visibility, reduced safety risks, enhanced security and cost efficiency. |
| iFEST |  | iFEST will specify and develop an integration framework for establishing and maintaining tool chains for the engineering of complex industrial embedded systems. Specific emphasis is placed on open tool chains for HW/SW co-design of heterogeneous and multi-core solutions, and life cycle support for an expected operational life time of several decades. |
| ME3Gas |  | ME³Gas will also contribute to the standardization work being carried out currently in Europe in the smart metering field (under the M/441 mandate of the EC mainly). The work will propose a standard for a European Gas Metering Infrastructure, which can be a part of a multi-utility platform to be made within the project. |
| POLLUX |  | POLLUX will develop a distributed real time ES platform for next generation electric vehicles, by using a component and programming-based design methodology. |
| pSHIELD |  | SHIELD aims at addressing Security, Privacy and Dependability (SPD) in the context of Embedded Systems (ESs) as “built in” rather than as “add-on” functionalities, proposing and perceiving the first step toward SPD certification for future ES. |
| R3COP |  | R3-COP will develop a fault-tolerant high-performance processing platform, based on a multi-core architecture, as well as innovative system components for robust perception of the environment including sensor fusion, and for reasoning and reliable action control. |
| RECOMP |  | RECOMP will establish methods, tools and platforms for enabling cost-efficient (re-)certification of safety-critical and mixed-criticality systems. Applications addressed are automotive, aerospace, industrial control systems, and lifts and transportation systems |
| SIMPLE |  | The main goal of SIMPLE is to research and deliver an intelligent, self-organizing embedded middleware platform, designed for the integration of manufacturing and logistics. SIMPLE will address the self-organization and cooperation of wireless sensors and smart (RFID) tags for federated, open and trusted use in the manufacturing and logistics applications. |
| SMARCOS |  | SMARCOS helps users of interconnected embedded systems by ensuring their inter-usability. Many products today connect with web services (media players, refrigerators, e-books, even cars). This |
| SMECY |  | SMECY envisions that recently emerged multi-core technologies will rapidly develop to massively parallel computing environments which, due to improved performance, energy and cost properties, will extensively penetrate the embedded system industry in a few years. |