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Handover Based IMS Registration Scheme for Next Generation Mobile Networks

机译:下一代移动网络基于切换的IMS注册方案

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Next generation mobile networks aim to provide faster speed and more capacity along with energy efficiency to support video streaming and massive data sharing in social and communication networks. In these networks, user equipment has to register with IP Multimedia Subsystem (IMS) which promises quality of service to the mobile users that frequently move across different access networks. After each handover caused due to mobility, IMS provides IPSec Security Association establishment and authentication phases. The main issue is that unnecessary reregistration after every handover results in latency and communication overhead. To tackle these issues, this paper presents a lightweight Fast IMS Mobility (FIM) registration scheme that avoids unnecessary conventional registration phases such as security associations, authentication, and authorization. FIM maintains a flag to avoid deregistration and sends a subsequent message to provide necessary parameters to IMS servers after mobility. It also handles the change of IP address for user equipment and transferring the security associations from old to new servers. We have validated the performance of FIM by developing a testbed consisting of IMS servers and user equipment. The experimental results demonstrate the performance supremacy of FIM. It reduces media disruption time, number of messages, and packet loss up to 67%, 100%, and 61%, respectively, as compared to preliminaries.
机译:下一代移动网络旨在提供更快的速度和更大的容量以及能源效率,以支持社交和通信网络中的视频流和海量数据共享。在这些网络中,用户设备必须向IP多媒体子系统(IMS)注册,以向经常在不同接入网络中移动的移动用户保证服务质量。在由于移动性导致的每次切换之后,IMS都会提供IPSec安全关联建立和身份验证阶段。主要问题是每次切换后不必要的重新注册会导致延迟和通信开销。为了解决这些问题,本文提出了一种轻量级的快速IMS移动性(FIM)注册方案,该方案避免了不必要的常规注册阶段,例如安全关联,身份验证和授权。 FIM维护一个标志以避免注销,并在移动后发送后续消息以向IMS服务器提供必要的参数。它还处理用户设备IP地址的更改,并将安全关联从旧服务器转移到新服务器。通过开发一个由IMS服务器和用户设备组成的测试平台,我们已经验证了FIM的性能。实验结果证明了FIM的性能至上。与预备相比,它最多可将媒体中断时间,消息数量和数据包丢失分别减少67%,100%和61%。

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