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Optimization and simulation of satellite IMS access gateway and signal's propagation dela

机译:卫星IMS接入网关和信号传播延迟的优化与仿真

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As the next generation network NGN core network solution, IMS (IP multimedia subsystem) can support a variety of terminal access method and provide a foundation for the fixed network and mobile network integration. IMS is using the session initiation protocol (SIP) as its core control protocol to establish, manage and terminate multimedia services. IMS provides multimedia communication services based on data, voice and video, it gives users an unprecedented experience. Satellite mobile communication system has become an integral part of the global communication network. It can be seamlessly connected to the global communication network, which provides a strong complement to the ground network coverage. In recent years, the research and implementation of multimedia services through satellite access to the IMS core network has also been concerned. However, the problem of propagation delay of satellite channel has a great influence on the QoS (quality of service) of IMS access. Therefore, the application of IMS streaming media transmission and SIP signaling interaction must also consider the propagation delay of the satellite channel. In this paper, the process of satellite access to IMS and the transmission delay of satellite communication was simulated; the complete IMS voice and video service access and communication process was designed and implemented. In order to solve the problem of the propagation delay of the satellite in the communication process, the session signaling process was optimized.
机译:作为下一代网络NGN核心网络解决方案,IMS(IP多媒体子系统)可以支持多种终端访问方法,并为固定网络和移动网络的集成提供了基础。 IMS使用会话发起协议(SIP)作为其核心控制协议来建立,管理和终止多媒体服务。 IMS提供基于数据,语音和视频的多媒体通信服务,它为用户提供了前所未有的体验。卫星移动通信系统已经成为全球通信网络的组成部分。它可以无缝连接到全球通信网络,这是对地面网络覆盖范围的有力补充。近年来,通过卫星接入IMS核心网的多媒体业务的研究和实现也受到关注。但是,卫星信道的传播延迟问题对IMS接入的QoS(服务质量)有很大影响。因此,IMS流媒体传输和SIP信令交互的应用还必须考虑卫星信道的传播延迟。本文模拟了卫星进入IMS的过程和卫星通信的传输时延。设计并实现了完整的IMS语音和视频服务访问和通信过程。为了解决通信过程中卫星传播延迟的问题,对会话信令过程进行了优化。

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