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Adaptive resource allocation based on satisfaction for LTE

机译:基于LTE满意度的自适应资源分配

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ICIC (inter-cell interference coordination) techniques are effectively applied into dense frequency reuse networks such as LTE (long term evolution). While mitigating the interference produced by nearby cells, researches only concentrate on maximum SINR or proportional fairness, without a consideration of various throughput demands. An adaptive resource allocation based on satisfaction (ARAS) algorithm is proposed not only to mitigate interferences but also to satisfy throughput demands adaptively. It utilizes eNBs (evolved-NodeBs) communications via X2 interface to allocate resources between cells. Each cell is divided into two zones: cell-edge and cell-center, of which a satisfaction is always tracked. The scheduler adjusts the resources allocation in a distributed manner related to the zone satisfaction states. Simulation results show that the proposed algorithm achieves a better satisfaction, meets different throughput demands and increases throughput fairness compared with reuse-1 model, FFR (fractional frequency reuse) and SFR (soft frequency reuse).
机译:ICIC(间歇式干扰协调)技术有效地应用于诸如LTE(长期演进)的密集频率重用网络中。在减轻附近细胞产生的干扰的同时,研究仅集中在最大的SINR或比例公平,而无需考虑各种产量需求。基于满意度(ARAS)算法的自适应资源分配不仅提出了缓解干扰,而且提出了满足吞吐量的适应性需求。它利用eNB(Evolved-NodeB)通信通过X2接口来分配单元之间的资源。每个单元被分成两个区域:细胞边缘和细胞中心,其中始终跟踪满足感。调度程序以与区域满意度状态相关的分布式方式调整资源分配。仿真结果表明,该算法达到了更好的满足,符合不同的吞吐量需求,并提高了与重新利用-1型号,FFR(分数频率重用)和SFR(软频率重用)相比的吞吐量公平。

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