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A Framework For Development And Evaluation Of A Dynamic Subchannel Allocation Scheme In An Ofdma System

机译:Ofdma系统中动态子信道分配方案的开发和评估框架

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This paper presents a framework for allocating radio resources to the Access Points (APs) introducing an Access Point Controller (APC). Radio resources can be either time slots or subchannels. The APC assigns subchannels to the APs using a dynamic subchannel allocation scheme. The developed framework evaluates the dynamic subchannel allocation scheme for a downlink multicellular Orthogonal Frequency Division Multiple Access (OFDMA) system. In the considered system, each AP and the associated Mobile Terminals (MTs) are not operating on a frequency channel with fixed bandwidth, rather the channel bandwidth for each AP is dynamically adapted according to the traffic load. The subchannels assignment procedure is based on quality estimations due to the interference measurements and the current traffic load. The traffic load estimation is realized with the measurement of the utilization of the assigned radio resources. The reuse partitioning for the radio resources is done by estimating mutual Signal to Interference Ratio (SIR) of the APs. The developed dynamic subchannel allocation ensures Quality of Service (QoS), better traffic adaptability, and higher spectrum efficiency with less computational complexity.
机译:本文提出了一个框架,用于向引入接入点控制器(APC)的接入点(AP)分配无线电资源。无线电资源可以是时隙或​​子信道。 APC使用动态子信道分配方案将子信道分配给AP。开发的框架评估下行链路多蜂窝正交频分多址(OFDMA)系统的动态子信道分配方案。在所考虑的系统中,每个AP和关联的移动终端(MT)不在具有固定带宽的频道上运行,而是根据业务负载动态调整每个AP的信道带宽。由于干扰测量和当前业务负载,子信道分配过程基于质量估计。通过测量所分配的无线电资源的利用来实现业务负载估计。通过估计AP的相互信噪比(SIR),完成无线电资源的重用分区。开发的动态子信道分配可确保服务质量(QoS),更好的流量适应性和更高的频谱效率,并且计算复杂度更低。

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