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A Dual-Decomposition-Based Resource Allocation for OFDMA Networks With Imperfect CSI

机译:具有不完善CSI的OFDMA网络的基于双分解的资源分配

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摘要

This paper presents a novel scheme for the allocation of subcarriers, rates, and power in orthogonal frequency-division multiple-access (OFDMA) networks. The scheme addresses practical implementation issues of resource allocation in OFDMA networks: the inaccuracy of channel-state information (CSI) available to the resource allocation unit (RAU) and the diversity of subscribers' quality-of-service (QoS) requirements. In addition to embedding the effect of CSI imperfection in the evaluation of the subscribers' expected rate, the resource-allocation problem is posed as a network utility maximization (NUM) one that is solved via decomposing it into a hierarchy of subproblems. These subproblems coordinate their allocations to achieve a final allocation that satisfies aggregate rate constraints imposed by the call-admission control (CAC) unit and OFDMA-related constraints. A complexity analysis shows that the proposed scheme is computationally efficient. In addition, performance evaluation findings support our theoretical claims: A substantial data rate gain can be achieved by considering the CSI imperfection, and multiservice classes can be supported with QoS guarantees.
机译:本文提出了一种在正交频分多址(OFDMA)网络中分配子载波,速率和功率的新颖方案。该方案解决了OFDMA网络中资源分配的实际实施问题:资源分配单元(RAU)可用的信道状态信息(CSI)不准确以及订户的服务质量(QoS)要求的多样性。除了将CSI缺陷的影响嵌入到对用户的预期速率的评估中之外,资源分配问题还被提出为网络效用最大化(NUM),可以通过将其分解为子问题的层次结构来解决。这些子问题协调它们的分配以实现最终分配,该最终分配满足由呼叫允许控制(CAC)单元施加的总速率约束和与OFDMA相关的约束。复杂度分析表明,该方案具有较高的计算效率。此外,性能评估的结果支持了我们的理论主张:通过考虑CSI缺陷,可以实现可观的数据速率增益,并且QoS保证可以支持多服务类。

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