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Optimization of satellite access lower layers for the transport of IP datagrams

机译:用于运输IP数据报的卫星访问下层的优化

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This paper presents a novel solution optimizing satellite access lower layers and system performances called variable size packets (VSPs) designed for the transport of Internet protocol (IP) datagrams or any packet type from the network layers characterized by a highly variable size. VSP objective is to maximize the efficiency of layers 1 and 2 through a joint optimization of access and transport mechanisms mainly for satellite systems addressing residential or corporate terminals market through a multiple-access scheme. It is particularly attractive for the return link of next-generation satellite systems to be IP-based, as a possible evolution of the digital video broadcast-return channel via satellite (DVB-RCS) standard. The VSP solution relies on the definition of multiple encapsulation sizes, and is associated to a waveform and an access adapted to variable size packets' transport. It uses the traffic's variable size nature to increase encapsulation efficiency, coding, and spectral efficiency performances, and system flexibility. It is well adapted to systems using an adaptive waveform leading to system capacity's increase and better performances. This paper describes the VSP principle, advantages and possible high-level system tradeoffs. It then focuses on one critical issue, the coding, and presents a suitable coding scheme's choice with regards to performances and implementation complexity.
机译:本文提出了一种新型解决方案,优化卫星访问下层和系统性能,称为可变大小分组(VSP),该数据报告(VSP)专为来自特征在于具有高度变量大小的网络图层的传输。 VSP目标是通过主要用于通过多访问方案寻址住宅或公司终端市场的卫星系统的接入和运输机制来最大化层1和2的效率。它对于基于IP的下一代卫星系统的返回链路特别有吸引力,作为通过卫星(DVB-RCS)标准的数字视频广播返回信道的可能演变。 VSP解决方案依赖于多个封装大小的定义,并且与适于变量大小分组传输的波形和访问相关联。它使用流量的可变尺寸性质来提高封装效率,编码和频谱效率性能,以及系统灵活性。它适用于使用自适应波形的系统,从而导致系统容量增加和更好的性能。本文介绍了VSP原理,优势和可能的高级系统权衡。然后,它专注于一个关键问题,编码,并提出了一个合适的编码方案,关于表演和实现复杂性。

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