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Joint admission control and antenna assignment for multiclass QoS in spatial multiplexing MIMO wireless networks

机译:空间复用MIMO无线网络中用于多类QoS的联合准入控制和天线分配

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摘要

We consider the problem of quality-of-service (QoS) provisioning for multiple traffic classes in a MIMO wireless network. This QoS provisioning is posed as a radio resource management (RRM) problem at a wireless node (e.g., a wireless mesh router) with multiple antennas. We decompose this RRM problem into two tractable subproblems, namely, the antenna assignment and the admission control problems. The objective of antenna assignment is to minimize the weighted packet dropping probability for the different traffic classes under constrained packet delay. The objective of admission control is to maximize the revenue of the wireless node gained from the ongoing connections for different traffic classes under constrained connection blocking probability and average per-connection throughput. The decision of antenna assignment is made in a short-term basis (e.g., for every packet transmission interval) while that of admission control is made in a long-term basis (i.e., when a connection arrives). Constrained Markov decision process (CMDP) models are formulated to obtain the optimal decisions on antenna assignment and admission control. To provide efficient channel utilization, the RRM framework considers adaptive modulation at the physical layer which exploits channel state information. Performance evaluation results show that this joint antenna assignment and admission control framework can provide classbased service differentiation while satisfying both the connectionlevel and packet-level QoS requirements.
机译:我们考虑MIMO无线网络中多个流量类别的服务质量(QoS)设置问题。在具有多个天线的无线节点(例如,无线网状路由器)处,这种QoS供应被视为无线电资源管理(RRM)问题。我们将此RRM问题分解为两个易于处理的子问题,即天线分配和准入控制问题。天线分配的目的是在受限的分组延迟下,针对不同业务类别将加权的分组丢弃概率降至最低。准入控制的目的是在受限的连接阻塞概率和平均每个连接吞吐量的情况下,最大化从不同业务类别的正在进行的连接中获得的无线节点收益。天线分配的决定是短期的(例如,对于每个分组传输间隔),而许可控制的决定是长期的(即,当连接到达时)。制定了约束马尔可夫决策过程(CMDP)模型以获得关于天线分配和接纳控制的最佳决策。为了提供有效的信道利用,RRM框架考虑在物理层利用信道状态信息进行自适应调制。性能评估结果表明,该联合天线分配和准入控制框架可以提供基于类别的服务区分,同时满足连接级别和数据包级别的QoS要求。

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