| ASTUTE |  | ASTUTE aims to define reference architecture for the development of HMIs, creating a platform for building embedded products that capture and act upon user intentions, taking account of user context and state. For instance, in the automotive domain, information from various sources will be proactively presented to support decisions according to the context by discarding annoying or distracting low-level information.
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| D3COS |  | Complex human-machine interplay in advanced automated assistance systems for transport modes requires adequate human-machine cooperation with shared authority. The Distributed Cooperative Human-Machine Systems (DCoS) project will develop affordable methods, techniques and tools that address the specification, development and evaluation of cooperative systems from a multi-agent perspective, with human and machine agents in charge of common system tasks. |
| ENCOURAGE |  | The ENCOURAGE project aims to develop embedded intelligence and integration technologies that will directly optimise energy use (20% savings) in buildings and enable active participation in the future smart grid environment by developing supervisory control strategies and orchestrating device operation, supporting inter-building energy exchange and through novel virtual sub-metering technologies and event-based middleware application supporting advanced monitoring and diagnostics concepts. |
| High Profile |  | HIGH PROFILE aims to advance the state-of-the-art by integrating imaging equipment for diagnostics to support combinations of images from different medical equipment modalities (MRI, MRS, fMRI and EEG) and compare/fuse images with physiological models of central nervous systems. Multi-scale, adaptive algorithms will allow the data to be merged and delivered so that physicians can monitor the status of the patient. |
| IoE |  | Internet of Energy (IoE) aims to develop hardware, software and middleware for seamless, secure connectivity and interoperability by connecting the Internet with energy grids to create an electric mobility infrastructure. The project will address reference designs and ES architectures for highly efficient, innovative smart network systems regarding requirements of compatibility, networking, security, robustness, diagnosis, maintenance, integrated resource management, and self-organisation. |
| MBAT |  | Europe enjoys an excellent reputation in transportation where integrated embedded systems are becoming significant and numerous. To boost Europe’s leadership in high-quality embedded systems, the MBAT project will provide European industry with a new leading-edge affordable and effective powerful validation and verification (V&V) technology in form of a Reference Technology Platform (the MBAT RTP). |
| nSHIELD |  | nSHIELD is a project that will provide a roadmap to address Security, Privacy and Dependability (SPD) by developing new technologies and consolidating those already explored in pSHIELD. The state of the art in SPD of single technologies and solutions will be improved and integrated with an innovative, modular, composable, expandable and high-dependable architectural framework, concrete tools and common SPD metrics |
| PRESTO |  | The PRESTO project aims to improve test-based embedded systems development and validation within the constraints of industrial development processes. Focusing on industrial development constraints will minimise specification time and need for expertise, keep the use of tools simple, enable smooth integration in the current design process and a versatile tool framework, design languages and integration test frameworks, and analyse results.
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| pSafeCer |  | pSafeCer targets greater efficiency and reduced time-to-market by composable safety certification of safety-relevant embedded systems in the automotive and construction equipment, avionics and rail segments. pSafeCer will also develop certification guidelines and a training example for other domains, thus considerably increasing its market impact. pSafeCer brings together leading companies and SMEs across Europe along with selected universities and research institutes. |
| WSN DPCM |  | This project will address large-scale application of Wireless Sensor Networks (WSN) by developing an integrated platform for smart environments comprising a middleware for heterogeneous wireless technologies, an integrated engineering tool for quick system development, a planning tool and a commissioning & maintenance tool. Two demonstrators will be built to evaluate the impact of the middleware and tools.
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