歐盟委員會和日本宣佈將會共同展開六個研究計劃,志於「重新定義網絡架構,以提高網絡承載數據的效率。」當中的頭馬為一個名為「STRAUSS」的計劃,其將會透過結合新式光分組交換技術、收發器和其他軟體層面上的改善去建立網速高於 100Gbps 的光纖網絡,這個速度是現有歐盟地區平均 19.7Mbps 網速的 5,000 倍。展開這個計劃的原因是他們預計 2018 年的網絡數據流量會是現在 12 倍,目前網絡架構未能正常承載到,其稍後將會在歐日兩地展開大規模測試。總之,六個計劃的目標都是改善有關網絡安全、網絡承載力、網絡儲存量、能源效率和高密度數據流量等問題,兩地會投入約 1,800 萬歐元的資金去支持計劃的運作。
The European Commission and Japan today announce six research projects aiming at redefining internet architectures to increase the efficiency of networks in carrying data. One project aims to build networks 5000 times faster than today’s average European broadband speed (100Gbps compared to 19.7Mbps).
There is a pressing need for new and more efficient networks in light of a massive online data explosion that is expected to continue over the next decade.
The world generates 1.7 million billion bytes of data per minute; data traffic volumes doubled between early 2012 and early 2013 and are expected to grow 12-fold by 2018. Such big data is growing faster than networks' capacity to carry it.
The projects, will receive around €18m in funding, and touch on challenges such as cyber security, network capacity, storage, high density data traffic and energy efficiency.
European Commission Vice-President Neelie Kroes, said: "Our Future Internet should know no barriers, least of all barriers created because we did not prepare for the data revolution.”
The funded projects are:
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STRAUSS aims to enable fibre optic networks at more than 100Gbps.
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MiWEBA will handle capacity by making better use of existing radio frequencies in order to boost ultra-high speed and mobile connections.
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NECOMA will explore new ways to enhance personal data security in sensitive environments such as medical history records by developing new metrics to evaluate threats and potential impact of cyber attacks.
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GreenICN will try to ensure an efficient use of energy in information networks. It will test network reliability in post-disaster situations (earthquakes, hurricanes) when energy resources are scarce and network performance is vital.
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ClouT will try to allow real-time control of sensors enabling smart city operations such as energy use, traffic flow or emergencies. To achieve this target, the project will integrate Cloud Computing and Internet of Things features.
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FELIX will set up joint EU-Japan experimental platforms that will help universities and research centres test new network technologies. Such new platforms will improve researchers' use of their experimental facilities.
Background
The future of telecommunications and computing will see a world of fully interconnected users and devices, requiring more efficient technology able to overcome booming traffic or security issues. The amount of information produced on a daily basis is key to new services and applications – from improved internet search engines to limited road congestion. Placing big data on servers in the "cloud" will enable wireless devices interconnectivity (smartphones, tablets, machines and sensors) making up the Internet of Things.
The projects' presentation took place at an inaugural event organised earlier today in Tokyo. This initiative brings together the European Commission, the Japanese Ministry of Internal Affairs and Communication (MIC), the National Institute of ICT (NICT) along with European and Japanese industrial players, leading universities and R&D centres, such as Orange, Telefonica, NEC, Panasonic, NTT, KDDI, ADVA, STMicroelectronics and Intel.
Useful links
The EU-Japan joint research Call in the Digital Agenda
EU-Japan Centre for Industrial Cooperation
Ministry of Internal Affairs and Communications, Japan
National Institute for Information and Communications Technology, Japan
Hash Tags: #eujapancentre #futurenetworks #FutureInternet #IoT #cloudcomputing
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Contacts : Ryan Heath (+32 2 296 17 16), Twitter: @ECspokesRyan |
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