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Scheduling in Multichannel Wireless Networks with Flow-Level Dynamics

机译:具有流级动态特性的多通道无线网络中的调度

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This paper studies scheduling in multichannel wireless networks with flow-level dynamics. We consider a downlink network with a single base station, M channels (frequency bands), and multiple mobile users (flows). We also assume mobiles dynamically join the network to receive finite-size files and leave after downloading the complete files. A recent study [16] has shown that the MaxWeight algorithm fails to be throughput-optimal under this flow-level dynamics. The main contribution of this paper is the development of joint channel-assignment and workload-based scheduling algorithms for multichannel downlink networks with dynamic flow arrivals/departures. We prove that these algorithms are throughput-optimal. Our simulations further demonstrate that a hybrid channel-assignment and workload-based scheduling algorithm significantly improves the network performance (in terms of both file-transfer delay and blocking probability) compared to the existing algorithms.
机译:本文研究具有流级别动态特性的多通道无线网络中的调度。我们考虑一个具有单个基站,M个信道(频带)和多个移动用户(流)的下行链路网络。我们还假设手机动态加入网络以接收有限大小的文件,并在下载完整文件后离开。最近的一项研究[16]表明,在这种流量级动态条件下,MaxWeight算法无法达到最佳吞吐量。本文的主要贡献是开发了针对具有动态流到达/离开的多信道下行链路网络的联合信道分配和基于工作量的调度算法。我们证明这些算法是吞吐量最优的。我们的仿真进一步证明,与现有算法相比,基于信道分配和工作负载的混合调度算法显着提高了网络性能(在文件传输延迟和阻塞概率方面)。

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