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Enabling SIP-based sessions in ad hoc networks

机译:在ad hoc网络中启用基于SIP的会话

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摘要

The deployment of infrastructure-less ad hoc networks is suffering from the lack of applications in spite of active research over a decade. This problem can be solved to a certain extent by porting successful legacy Internet applications and protocols to the ad hoc network domain. Session Initiation Protocol (SIP) is designed to provide the signaling support for multimedia applications such as Internet telephony, Instant Messaging, Presence etc. SIP relies on the infrastructure of the Internet and an overlay of centralized SIP servers to enable the SIP endpoints discover each other and establish a session by exchanging SIP messages. However, such an infrastructure is unavailable in ad hoc networks. In this paper, we propose two approaches to solve this problem and enable SIP-based session setup in ad hoc networks (ⅰ) a loosely coupled approach, where the SIP endpoint discovery is decoupled from the routing procedure and (ⅱ) a tightly coupled approach, which integrates the endpoint discovery with a fully distributed cluster based routing protocol that builds a virtual topology for efficient routing. Simulation experiments show that the tightly coupled approach performs better for (relatively) static multihop wireless networks than the loosely coupled approach in terms of the latency in SIP session setup. The loosely coupled approach, on the other hand, generally performs better in networks with random node mobility. The tightly coupled approach, however, has lower control overhead in both the cases.
机译:尽管进行了十多年的积极研究,但缺乏基础设施的自组织网络的部署仍缺乏应用程序。通过将成功的旧版Internet应用程序和协议移植到ad hoc网络域,可以在一定程度上解决此问题。会话发起协议(SIP)旨在为多媒体应用(例如Internet电话,即时消息传递,状态等)提供信令支持。SIP依赖于Internet的基础结构和集中式SIP服务器的覆盖,以使SIP端点能够相互发现并通过交换SIP消息建立会话。但是,这种基础结构在ad hoc网络中不可用。在本文中,我们提出了两种方法来解决此问题并在自组织网络中启用基于SIP的会话建立(ⅰ)松散耦合的方法,其中SIP端点发现与路由过程分离,以及(ⅱ)紧密耦合的方法,它将端点发现与基于完全分布式集群的路由协议集成在一起,该协议可构建虚拟拓扑以实现高效路由。仿真实验表明,就SIP会话设置中的延迟而言,紧密耦合方法在(相对)静态多跳无线网络中的性能要优于松散耦合方法。另一方面,松散耦合方法通常在具有随机节点移动性的网络中表现更好。但是,在两种情况下,紧密耦合方法的控制开销都较低。

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