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Efficient Next Generation Emergency Communications over Multi-Access Edge Computing

机译:基于多路访问边缘计算的高效下一代紧急通信

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摘要

Traditionally, emergency communications between citizens and public authorities relied on legacy telecommunication technologies unable to cope with the agile, rich-media-content communications that mobile users are already using. This is due to the lack of harmonization and interoperable IP-based networking solutions. With the operators currently migrating to broadband IP infrastructures, emergency systems also need to follow this path and adapt their emergency communication platforms to fulfill next generation emergency services regulatory requirements. This becomes even more evident in light of the forthcoming 5G networks, which are envisioned to support an amalgam of diverse applications and services with heterogeneous performance requirements, including mission-critical IoT communication, massive machine-type communication, and gigabit mobile connectivity. Emergency service operators face an enormous challenge in order to synchronize their model of operation with the 5G paradigm. This article studies the challenges that next generation emergency services need to overcome in order to fulfill the requirements for rich-content, real-time, location-specific communications. The concept for next generation emergency communications as described in the project EMYNOS is presented, along with a vision of how this concept can fulfill the 5G requirements for ultra-reliable and ultra-low-latency emergency communications.
机译:传统上,公民和公共机构之间的紧急通信依赖于传统的电信技术,无法应对移动用户已经在使用的敏捷,富媒体内容通信。这是由于缺乏协调和基于IP的可互操作的网络解决方案。随着运营商当前正在迁移到宽带IP基础设施,应急系统也需要遵循这一道路并调整其应急通信平台,以满足下一代应急服务监管要求。鉴于即将到来的5G网络变得更加明显,该网络可以支持多种具有不同性能要求的应用程序和服务,包括关键任务IoT通信,大规模机器类型通信和千兆移动连接。为了使他们的运营模型与5G范例同步,紧急服务运营商面临着巨大的挑战。本文研究了下一代应急服务需要满足的挑战,以满足丰富,实时,针对特定地点的通信的要求。提出了项目EMYNOS中描述的下一代紧急通信的概念,并展望了该概念如何满足超可靠和超低延迟紧急通信的5G要求。

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