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Distributed Rate-Control and Delay-Guaranteed Scheduling in MR-MC Wireless Mesh Networks

机译:MR-MC无线网状网络中的分布式速率控制和时延保证调度

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摘要

Wireless mesh networks (WMNs) can provide flexible wireless connections in smart city, Internet of Things (IoT), and device-to-device (D2D) communications. The performance of WMNs can be greatly enhanced by adopting the multi-radio multi-channel (MR-MC) technique, which enables a node to communicate with more nodes simultaneously. However, increasing the number of data flows will result in network congestion and longer end-to-end delays. In this paper, a distributed rate-control and delay-aware (DRDA) scheduling algorithm is proposed based on a multidimensional conflict graph. To satisfy the arrival rate and delay constraints of a flow, two virtual queues are constructed. All the actual and virtual queues are stabilized by the Lyapunov drift optimization method. The scheduling policy of each flow is optimized only based on the local information. The simulation results show that our proposed algorithm can maintain the stability of all the queues and strictly satisfy the arrival rate and delay constraint of each flow in the network as well.
机译:无线网状网络(WMN)可以在智能城市,物联网(IoT)和设备到设备(D2D)通信中提供灵活的无线连接。通过采用多无线电多信道(MR-MC)技术可以大大提高WMN的性能,该技术使一个节点可以同时与更多节点通信。但是,增加数据流的数量将导致网络拥塞和更长的端到端延迟。本文提出了一种基于多维冲突图的分布式速率控制和延迟感知(DRDA)调度算法。为了满足流的到达速率和延迟约束,构造了两个虚拟队列。通过Lyapunov漂移优化方法可以稳定所有实际队列和虚拟队列。仅基于本地信息优化每个流的调度策略。仿真结果表明,该算法能够保持所有队列的稳定性,并严格满足网络中每个流的到达率和时延约束。

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