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A dynamic routing concept for ATM-based satellite personal communication networks

机译:基于ATM的卫星个人通信网络的动态路由概念

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摘要

Satellite systems are going to build a part of the future personal communications infrastructure. The first-generation candidates for satellite personal communication networks (S-PCN) will rely on low Earth orbit (LEO) and medium Earth orbit (MEO) constellations. A noticeable trend in this field is toward broadband services and the use of ATM. For LEO satellite systems employing intersatellite links (ISLs), this paper proposes an overall networking concept that introduces the strengths of ATM to their operation. The core of the paper is the design of a new routing scheme for the periodically time-variant ISL subnetwork, discrete-time dynamic virtual topology routing (DT-DVTR), and its ATM implementation. DT-DVTR works completely off line, i.e., prior to the operational phase of the system. In a first step, a virtual topology is set up for all successive time intervals of the system period, providing instantaneous sets of alternative paths between all source-destination node pairs. In the second step, path sequences over a series of time interval are chosen from that according to certain optimization procedures. An ATM-based implementation of DT-DVTR in LEO satellite ISL networks is presented with some emphasis on the optimization alternatives, and the performance in terms of delay jitter is evaluated for an example ISL topology.
机译:卫星系统将构成未来个人通信基础设施的一部分。卫星个人通信网络(S-PCN)的第一代候选人将依赖低地球轨道(LEO)和中地球轨道(MEO)星座。该领域的显着趋势是宽带服务和ATM的使用。对于采用星际链路(ISL)的LEO卫星系统,本文提出了一个整体网络概念,该概念将ATM的优势引入其操作。本文的核心是为周期性时变ISL子网,离散时间动态虚拟拓扑路由(DT-DVTR)及其ATM实现设计一种新的路由方案。 DT-DVTR完全脱机工作,即在系统运行阶段之前。第一步,为系统周期的所有连续时间间隔建立虚拟拓扑,从而在所有源-目标节点对之间提供备用路径的瞬时集合。在第二步中,根据某些优化程序从一系列时间间隔中选择路径序列。提出了LEO卫星ISL网络中DT-DVTR的基于ATM的实现方式,其中重点强调了优化方案,并针对示例ISL拓扑评估了延迟抖动方面的性能。

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