The LOMS platform and open-source tools, together with new intermediaries, give service providers the opportunity of easily generating specialised localized services for their mobile phone clients, as has been demonstrated on a number of times.
The function of ESI-Tecnalia within the project is to lead the development aspects on the provision of Local Mobile Services. In cooperation with their partners, who are undertaking the underlying infrastructure, it has created a powerful series of tools that enable small and medium-sized companies and self-employed persons to develop new services easily and rapidly, as well as to adapt existing services to their needs.
Another function of ESI-Tecnalia, together with Ibermática, has involved the definition of a language and of tools to simplify multimodal access, with regard to contents and services for mobile users. The development of content distribution and diversion technologies for the reuse of existing content from different sources have also been taken into account in this project.
European Software Institute (ESI-Tecnalia) is one of the members taking part in and leader of the work packet on the development of services, within the European Local Mobile Services (LOMS) project. This project has been awarded the gold medal prize by Information Technology for European Advancement (ITEA) and ARTEMISIA, the Association for R&D actors in the field of ARTEMIS (Advance Research & Technology of Embedded Intelligence and Systems).
The LOMS project also won the silver medal for the most voted exhibition stand by participants at the symposium recently organised by ITEA2 (the EUREKA Software-intensive Systems and Services Cluster) and ARTEMISIA in Rotterdam (the Netherlands).
Irati Kortabitarte | alfa
Product placement: Only brands placed very prominently benefit from 3D technology
07.07.2016 | Alpen-Adria-Universität Klagenfurt
NASA Goddard network maintains communications from space to ground
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In recent years, lasers with ultrashort pulses (USP) down to the femtosecond range have become established on an industrial scale. They could advance some applications with the much-lauded “cold ablation” – if that meant they would then achieve more throughput. A new generation of process engineering that will address this issue in particular will be discussed at the “4th UKP Workshop – Ultrafast Laser Technology” in April 2017.
Even back in the 1990s, scientists were comparing materials processing with nanosecond, picosecond and femtosesecond pulses. The result was surprising:...
Have you ever wondered how you see the world? Vision is about photons of light, which are packets of energy, interacting with the atoms or molecules in what...
A multi-institutional research collaboration has created a novel approach for fabricating three-dimensional micro-optics through the shape-defined formation of porous silicon (PSi), with broad impacts in integrated optoelectronics, imaging, and photovoltaics.
Working with colleagues at Stanford and The Dow Chemical Company, researchers at the University of Illinois at Urbana-Champaign fabricated 3-D birefringent...
In experiments with magnetic atoms conducted at extremely low temperatures, scientists have demonstrated a unique phase of matter: The atoms form a new type of quantum liquid or quantum droplet state. These so called quantum droplets may preserve their form in absence of external confinement because of quantum effects. The joint team of experimental physicists from Innsbruck and theoretical physicists from Hannover report on their findings in the journal Physical Review X.
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The Max Planck Institute for Physics (MPP) is opening up a new research field. A workshop from November 21 - 22, 2016 will mark the start of activities for an innovative axion experiment. Axions are still only purely hypothetical particles. Their detection could solve two fundamental problems in particle physics: What dark matter consists of and why it has not yet been possible to directly observe a CP violation for the strong interaction.
The “MADMAX” project is the MPP’s commitment to axion research. Axions are so far only a theoretical prediction and are difficult to detect: on the one hand,...
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