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Smart-campuses are an emerging ecosystem that permit to enhance the performance and efficiency of academic facilities. Besides, they are also adopted as research, development, and testing platforms for the integration of novel management and governance mechanisms in complex ICT infrastructures. In this line, they are considered as small smart-city-like scenarios which can be used as a playground prior to large-scale deployments. This work presents the GAIA 5G smart-campus, located in the Espinardo campus of the University of Murcia (Spain). In the first place, its technological architecture is presented, detailing the multi-access platform that provides 5G, Internet of Things (IoT), and vehicular communications connectivity. Also, the virtualized computation environment is described. Thanks to these two pillars, GAIA 5G has the potential to host diverse use cases in multiple verticals, such as 5G connectivity, Network Function Virtualization (NFV) management and orchestration, or cybersecurity, which are also described. As discussed along the paper, GAIA 5G is an operative smart-campus infrastructure ready to support state-of-the-art research and accommodate novel 5Gand-beyond (B5G) test cases.
This work has been supported by Fundación Séneca—Agencia de Ciencia y Tecnología de la Región de Murcia—under the FPI Grant 21429/FPI/20, and co-funded by Odin Solutions S.L., Región de Murcia (Spain); by the Spanish Ministry of Science and Innovation under the DIN2019-010827 Industrial PhD Grant, and co-funded by Odin Solutions S.L.; by the European Commission under the 5GASP (Grant No. 101016448) and INSPIRE-5Gplus (Grant No. 871808) projects; by the ONOFRE-3 project (Grant No. PID2020-112675RB-C44) funded by MCIN/AEI/10.13039/501100011033; and by the 5G Huerta project (Grant No.EQC2019-006364-P) funded by the Spanish Ministry of Science, Innovation and Universities, with ERDF funds.
SDN, NFV, IoT, MEC, 5G, Smart-campus, B5G
SDN, NFV, IoT, MEC, 5G, Smart-campus, B5G
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