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首页> 外文期刊>Journal of network and computer applications >Secure and efficient protocol for fast handover in 5G mobile Xhaul networks
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Secure and efficient protocol for fast handover in 5G mobile Xhaul networks

机译:安全高效的协议,可在5G移动Xhaul网络中快速切换

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摘要

Mobile networks are observing an all time increase in the number of users and services. These networks have hit the 5G requisites in no time. Current service providers are aiming at resolving issues of subsisting networks by exploiting the capacity and coverage enhancement features of 5G. With a broad spectrum, it has now become more facile to accommodate an astronomically immense number of devices each having multiple applications authoritatively mandating network accessibility. Despite these advantages, such networks suffer from several issues cognate to smooth operations of fronthaul and backhaul, such as interference management, link reliability, flatness, security and flexibility. Integrating fronthaul and backhaul together as an Xhaul is suggested as one of the efficient solutions for handling these issues. Xhaul forms integrated planes which use heterogeneous switches for high optical transmissions. Despite being efficient, Xhaul links are weak in terms of security. The situations will be more serious, particularly when a massive number of User Equipment (UE) and IoT devices are now connected to it This issue is further raised when the terminal fortifying the fronthaul and backhaul moves leading to the formation of mobile Xhaul network. The current security solutions for WiFi, WiMax, WiBro, 4G/LTE are unable to fortify privacy and perfect forward secrecy in mobile Xhaul network, which is a quandary targeted in this paper. To resolve these issues, a novel key exchange and authentication protocol is proposed, which is capable of securing Xhaul links for a moving terminal in the network. The proposed approach is tested utilizing mobile ground node and drone as moving terminal across multiple hubs. The formal analysis utilizing BAN logic and AVISPA tool slake the security requisites and performance evaluation justifies the efficiency in comparison with the existing solutions.
机译:移动网络一直在观察用户和服务数量的不断增长。这些网络很快达到了5G要求。当前的服务提供商旨在通过利用5G的容量和覆盖增强功能来解决现有网络的问题。在广泛的范围内,现在变得更容易容纳天文学上数量庞大的设备,每个设备都具有多个授权管理网络可访问性的应用程序。尽管具有这些优点,但是这样的网络仍遭受与前传和回传的平稳操作有关的几个问题,例如干扰管理,链路可靠性,平坦性,安全性和灵活性。建议将前传和回传作为Xhaul集成在一起,作为处理这些问题的有效解决方案之一。 Xhaul形成了集成平面,这些平面使用异构开关进行高光传输。尽管效率很高,但Xhaul链接的安全性仍然很弱。情况将更加严重,特别是当现在已连接大量用户设备(UE)和IoT设备时。当加强前传和回传的终端移动导致形成移动Xhaul网络时,该问题将进一步引发。当前针对WiFi,WiMax,WiBro,4G / LTE的安全解决方案无法在移动Xhaul网络中强化隐私并实现完美的前向保密性,这是本文的主要目标。为了解决这些问题,提出了一种新颖的密钥交换和认证协议,该协议能够保护网络中移动终端的Xhaul链路。使用移动地面节点和无人机作为跨多个集线器的移动终端,对提出的方法进行了测试。利用BAN逻辑和AVISPA工具进行的正式分析满足了安全性要求,而性能评估证明与现有解决方案相比效率更高。

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