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A combined resource management and admission control scheme for optimizing uplink performance of M-WiMAX systems

机译:用于优化M-WiMAX系统上行链路性能的组合资源管理和许可控制方案

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摘要

According to the AMC (Adaptive Modulation-Coding) mechanism of the M(obile)-WiMAX, the amount of data per modulation symbol depends on the perceived Signal-to-Noise Ratio, while, based on the OFDMA (Orthogonal Frequency Division Multiple Access) technique, each communication entails multiple concurrent transmissions. Therefore, in the uplink case, where each terminal has a maximum power limitation, the assignment of additional subcarriers does not always correspond to a proportional datarate increment, since the power dispersion over a larger set of symbols can cause the transition to a lower AMC level. In this framework, the present paper introduces a novel RRM (Radio Resource Management) algorithm that dynamically alters the number of subcarriers to be allocated to each connection so as to achieve spectrum saving via augmenting the bits per symbol ratio. Furthermore, in order to mitigate the extensive fluctuations imposed by the novel RRM scheme, an adequate minimum-complexity CAC (Connection Admission Control) scheme is proposed, which succeeds in accurately estimating the bandwidth requirements of the active flows by incorporating theoretical calculations along with a sampling process. It is proven analytically as well as through simulations that the new combined RRM-CAC strategy increases substantially the system capacity, without violating the Quality-of-Service guarantees.
机译:根据M(obile)-WiMAX的AMC(自适应调制编码)机制,每个调制符号的数据量取决于感知的信噪比,而基于OFDMA(正交频分多址) )技术,每次通信都需要多个并发传输。因此,在每个终端都有最大功率限制的上行链路情况下,附加子载波的分配并不总是对应于成比例的数据速率增量,因为在较大的符号集上的功率分散会导致过渡到较低的AMC电平。在此框架中,本论文介绍了一种新颖的RRM(无线电资源管理)算法,该算法可动态更改分配给每个连接的子载波的数量,从而通过增加每个符号的比特率来实现频谱节省。此外,为了缓解新型RRM方案带来的广泛波动,提出了一种适当的最小复杂度CAC(连接准入控制)方案,该方案通过将理论计算与a合并,成功地准确估算了活动流的带宽需求。采样过程。通过分析和仿真证明,新的RRM-CAC组合策略可在不违反服务质量保证的前提下大幅提高系统容量。

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