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Real time communications over on-board mobile networks

机译:车载移动网络上的实时通信

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摘要

The Internet Engineering Task Force (IETF) has recently released routing standards that allow deployment of TCP/IP local area networks (LANs) onboard a moving vehicle and yet maintain permanent connectivity of the onboard LAN to the Internet via a vehicular mobile router. This recent development opens up new opportunities for providing efficient mobile computing for users on the move, especially for commuters traveling on public transports. Supporting real-time communications, e.g. IP Telephony, on-line video on demand, etc., over such onboard mobile networks is the main motivation of this thesis. Due to the volatility of the wireless bandwidth available to connect the moving LAN to the Internet at different locations of the trip, supporting on-line services that require bandwidth guarantees becomes a challenging task. The main problem investigated is how to provide bandwidth guarantee efficiently, effectively, and in a scalable manner in the context of moving onboard networks. To achieve the goal, a systematic approach is taken that involves (i) designing a signalling protocol that allows transparent bandwidth reservation for the aggregate demand of all onboard users in the vehicle, and (ii) proposing effective aggregation and bandwidth reservation policies that aim to maximize the chances of successful reservation and minimize the bandwidth and processing overhead in critical network elements. Mathematical models are derived to evaluate the performance of proposed solutions. These models are validated using discrete event simulation. One important conclusion reached is that onboard mobile communication provides significant aggregation and centralized management opportunities that must be exploited to provide a scalable solution to the bandwidth guarantee problem in mobile communications. The techniques proposed and analyzed in this thesis to exploit such aggregation opportunities constitute the original contribution to knowledge.
机译:互联网工程任务组(IETF)最近发布了路由标准,该标准允许在行进的车辆上部署TCP / IP局域网(LAN),并通过车载移动路由器保持机载LAN与Internet的永久连接。这项最新进展为在旅途中的用户(尤其是乘坐公共交通工具的通勤者)提供高效的移动计算开辟了新的机遇。支持实时通信,例如此类车载移动网络上的IP电话,在线点播视频等是本文的主要动机。由于在旅行的不同位置可用于将移动的LAN连接到Internet的无线带宽的易变性,支持需要带宽保证的在线服务成为一项艰巨的任务。研究的主要问题是如何在移动车载网络的情况下有效,有效和可扩展地提供带宽保证。为了实现该目标,采取了一种系统性的方法,该方法包括(i)设计一种信令协议,该协议允许为车辆中所有车载用户的总需求提供透明的带宽预留,以及(ii)提出旨在实现以下目的的有效聚合和带宽预留策略:最大程度地增加成功保留的机会,并最小化关键网络元素中的带宽和处理开销。推导数学模型以评估所提出解决方案的性能。这些模型已使用离散事件仿真进行了验证。得出的一个重要结论是,机载移动通信提供了重要的聚合和集中管理机会,必须利用这些机会来为移动通信中的带宽保证问题提供可扩展的解决方案。本文提出和分析的利用这种聚集机会的技术构成了对知识的最初贡献。

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