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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Modeling the flow-level performance of hierarchical modulation in OFDMA-based networks
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Modeling the flow-level performance of hierarchical modulation in OFDMA-based networks

机译:在基于OFDMA的网络中建模分层调制的流级别性能

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摘要

Hierarchical Modulation (HM) is a means to enhance the spectral efficiency of a system by superposing, in terms of modulation, an additional stream for a given user with good radio conditions on a basic stream of a user with worse radio conditions. This, in turn, increases the throughput of the former user and hence the overall performance of the whole system. We consider, in this work, such a performance at the flow level, for a realistic dynamic setting where users come to the system and leave it after a finite duration corresponding, for instance, to the completion of a file transfer. We specifically model and quantify, both analytically and via simulations, the gain thus achieved and propose two extensions to the basic HM algorithm: a first one in which a user with bad radio conditions is also superposed on one with better radio conditions and a second one in which a user of one type is further superposed on a user of the same type as well.
机译:分层调制(HM)是通过在调制方面将具有良好无线电条件的给定用户的附加流叠加在具有较差无线电条件的用户的基本流上来增强系统的频谱效率的手段。反过来,这增加了前一个用户的吞吐量,从而提高了整个系统的整体性能。在这项工作中,我们考虑在现实的动态设置下,在流级别上的性能,在这种动态设置下,用户进入系统,并在有限的持续时间(例如,完成文件传输)后离开系统。我们专门通过分析和仿真对由此获得的增益进行建模和量化,并提出了对基本HM算法的两个扩展:第一个扩展,其中无线电条件较差的用户也叠加在无线电条件较好的用户上,第二个其中一种类型的用户也进一步叠加在相同类型的用户上。

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