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Cross-layer design of dynamic resource allocation with diverse QoS guarantees for MIMO-OFDM wireless networks

机译:MIMO-OFDM无线网络中具有不同QoS保证的动态资源分配的跨层设计

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We propose a PHY-MAC cross-layer based dynamic-resource allocation (DRA) scheme with diverse QoS guarantees for heterogeneous mobile users over MIMO-OFDM wireless network downlinks. Our scheme differentiates real-time users (e.g., audio/video) from non-real-time users (e.g., data). At the PHY layer, the DRA adaptively allocates transmit antennas and modulation levels for real- and non-real-time users to increase the spectral efficiency while guaranteeing the distinct BER-QoS requirements. Combining with the proposed PHY-layer infrastructure, the DRA at the MAC layer treats real- and non-real-time users differently: (1) it dynamically assigns time-slots for real-time users in a TDM-mode to guarantee the bounded delays; (2) it adaptively allocates subcarriers for non-real-time users in an FDM-mode to maximize the system throughput while retaining fairness among users. We analytically derive the admission-control and time-slot allocation conditions to guarantee the statistical delay-bound for real-time users using the effective bandwidth theory. Also, extensive simulations are conducted to evaluate the performance of our proposed scheme.
机译:我们提出了一种基于PHY-MAC跨层的动态资源分配(DRA)方案,该方案为MIMO-OFDM无线网络下行链路上的异构移动用户提供了多种QoS保证。我们的方案将实时用户(例如音频/视频)与非实时用户(例如数据)区分开来。在PHY层,DRA为实时和非实时用户自适应地分配发射天线和调制级别,以提高频谱效率,同时保证不同的BER-QoS要求。与建议的PHY层基础架构相结合,MAC层的DRA对实时和非实时用户的区别对待:(1)它以TDM模式为实时用户动态分配时隙,以确保有界延误; (2)它以FDM模式自适应地为非实时用户分配子载波,以最大化系统吞吐量,同时保持用户之间的公平性。我们使用有效带宽理论分析得出准入控制和时隙分配条件,以确保实时用户的统计延迟范围。此外,进行了广泛的仿真以评估我们提出的方案的性能。

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