Standalone eNode-B design with integrated virtual EPC in public safety networks

Can Altay, Nazli Zeynep Bozdemir, Erdogan Camcioglu
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引用次数: 7

Abstract

LTE technology is considered as the next enabler of the public safety networks with regard of its performance and reliability. The mission critical communication in public safety network requires non-stop connectivity, especially in natural disaster scenarios. To provide further reliability, the eNode-Bs should ensure connectivity when the backhaul connection fails. This paper proposes a standalone eNode-B architecture, which deploys its own integrated virtual EPC to ensure service without backhaul connection. The proposed standalone eNode-Bs are also designed to establish backhaul connection with each other to extend the coverage without need for a central EPC structure. Standalone LTE solutions for PSNs that fall within the scope of this paper, aim to offer resiliency, robustness, dynamicity, and high quality service. The basic LTE functions and further design challenges, related to connected or non-connected standalone eNode-Bs, are discussed through the paper.
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独立eNode-B设计,在公共安全网络中集成虚拟EPC
LTE技术在性能和可靠性方面被认为是公共安全网络的下一个使能器。公共安全网络的关键任务通信要求不间断连接,特别是在自然灾害场景下。为了提供进一步的可靠性,enode - b应该在回程连接失败时确保连通性。本文提出了一种独立的eNode-B架构,该架构部署了自己的集成虚拟EPC,以保证不需要回程连接的业务。拟议的独立enode - b还被设计为相互建立回程连接,以扩大覆盖范围,而无需中央EPC结构。本文讨论的用于psn的独立LTE解决方案旨在提供弹性、鲁棒性、动态性和高质量的服务。本文讨论了与连接或非连接的独立enode - b相关的基本LTE功能和进一步的设计挑战。
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