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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Adaptive spread-spectrum multicarrier multiple-access over wirelines
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Adaptive spread-spectrum multicarrier multiple-access over wirelines

机译:有线自适应扩频多载波多址

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摘要

In this paper, we investigate the dynamic resource allocation adapted to spread-spectrum multicarrier multiple-access (SS-MC-MA) systems in a multiuser power line communication (PLC) context. The developed adaptive system is valid for uplink, downlink, as well as for indoor and outdoor communications. The studied SS-MC-MA system is based on classical multicarrier modulation like digital multitone (DMT), combined with a spread-spectrum (SS) component used to multiplex several information symbols of a given user over the same subcarriers. The multiple-access task is carried out using a frequency-division multiple-access (FDMA) approach so that each user is assigned one or more subcarrier sets. The number of subcarriers in each set is given by the spreading code length as in classical SS-MC-MA systems usually studied in the wireless context. We derive herein a new loading algorithm that dynamically handles the system configuration in order to maximize the data throughput. The algorithm consists in an adaptive subcarrier, code, bit, and energy assignment algorithm. Power-spectral density constraint due to spectral mask specifications is considered, as well as finite-order modulations. In that case, it is shown that SS-MC-MA combined with the proposed loading algorithm achieves higher throughput than DMT in a multiuser PLC context. Because of the finite granularity of the modulations, some residual energy is indeed wasted on each subcarrier of the DMT spectrum. The combining of a spreading component with DMT allows to merge these amounts of energy so that one or more additional bits can be transmitted in each subcarrier subset leading to significant throughput gain. Simulations have been run over measured PLC channel responses and highlight that the proposed system is all the more interesting than the signal-to-noise ratio is low.
机译:在本文中,我们研究了在多用户电力线通信(PLC)上下文中适用于扩频多载波多址(SS-MC-MA)系统的动态资源分配。开发的自适应系统适用于上行链路,下行链路以及室内和室外通信。所研究的SS-MC-MA系统基于经典的多载波调制(如数字多音(DMT)),并结合了用于在相同子载波上复用给定用户的多个信息符号的扩频(SS)组件。使用频分多址(FDMA)方法执行多址任务,以便为每个用户分配一个或多个子载波集。如通常在无线环境中研究的经典SS-MC-MA系统中那样,每个组中子载波的数量由扩展码长度给出。我们在这里导出一种新的加载算法,该算法动态处理系统配置,以使数据吞吐量最大化。该算法包括自适应子载波,代码,比特和能量分配算法。考虑了由于频谱模板规范引起的功率谱密度约束以及有限阶调制。在那种情况下,表明在多用户PLC上下文中,SS-MC-MA与所提出的加载算法相结合,实现了比DMT更高的吞吐量。由于调制的有限粒度,确实在DMT频谱的每个子载波上浪费了一些剩余能量。扩频分量与DMT的组合允许合并这些能量,以便可以在每个子载波子集中传输一个或多个其他比特,从而获得显着的吞吐量增益。对测量的PLC通道响应进行了仿真,并强调了所提出的系统比信噪比低更有趣。

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