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A distributed opportunistic scheduling protocol for multi-channel wireless ad-hoc networks

机译:多通道无线自组织网络的分布式机会调度协议

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摘要

The topic of opportunistic scheduling for wireless ad-hoc networks has been studied for single-channel networks in several recent works. Since now many wireless systems provide multiple channels for data transmission, this problem is of practical interest for networks with multiple channels. In this paper, we study the problem of opportunistic scheduling for one type of ad-hoc networks where the wireless spectrum can be divided into multiple independent sub-channels for better efficiency. We start with a naive multi-channel protocol where the scheduling scheme is working independently from sub-channel to sub-channel. We show that the naive protocol can only marginally improve the system throughput. We then develop a protocol to jointly consider the opportunistic scheduling behavior across multiple sub-channels. We characterize the optimal stopping rule and present several bounds for the system throughput of the multi-channel protocol. We show that by joint optimization of the scheduling scheme across multiple sub-channels, the proposed protocol improves the system throughput considerably in contrast to that of single-channel systems.
机译:在一些近期的工作中,已经针对单信道网络研究了无线自组织网络的机会调度主题。由于现在许多无线系统都提供用于数据传输的多个信道,因此对于具有多个信道的网络,该问题具有实际意义。在本文中,我们研究了一种类型的自组织网络的机会调度问题,其中无线频谱可以分为多个独立的子信道以提高效率。我们从朴素的多通道协议开始,在该协议中,调度方案在子通道之间独立工作。我们表明,朴素的协议只能稍微提高系统的吞吐量。然后,我们开发一种协议,以共同考虑跨多个子通道的机会调度行为。我们表征了最佳停止规则,并提出了多通道协议的系统吞吐量的几个界限。我们显示,通过联合优化多个子信道上的调度方案,与单信道系统相比,所提出的协议可显着提高系统吞吐量。

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