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Distributed Link Scheduling Under SINR Model in Multihop Wireless Networks

机译:多跳无线网络中SINR模型下的分布式链路调度

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摘要

Link adaptation technologies, such as Adaptive Modulation and Coding (AMC) and Multiple-Input–Multiple-Output (MIMO), are used in advanced wireless communication systems to achieve high spectrum efficiency. Communication performance can be improved significantly by adaptive transmissions based on the quality of received signals, i.e., the signal-to-interference-plus-noise ratio (SINR). However, for multihop wireless communications, most link scheduling schemes have been developed under simplified interference models that do not account for accumulative interference and cannot fully exploit the recent advances in PHY-layer communication theory. This paper focuses on developing link scheduling schemes that can achieve optimal performance under the SINR model. One key idea is to treat an adaptive wireless link as multiple parallel virtual links with different signal quality, building on which we develop throughput-optimal scheduling schemes using a two-stage queueing structure in conjunction with recently developed carrier-sensing techniques. Furthermore, we introduce a novel three-way handshake to ensure, in a distributed manner, that all transmitting links satisfy their SINR requirements. We evaluate the proposed schemes through rigorous analysis and simulations.
机译:链路自适应技术,例如自适应调制和编码(AMC)和多输入多输出(MIMO),已用于先进的无线通信系统中,以实现高频谱效率。通过基于接收信号的质量,即信干噪比(SINR)的自适应传输,可以显着改善通信性能。但是,对于多跳无线通信,大多数链路调度方案都是在简化的干扰模型下开发的,该模型不考虑累积干扰,无法充分利用PHY层通信理论的最新进展。本文重点研究在SINR模型下可以实现最佳性能的链路调度方案。一个关键思想是将自适应无线链路视为具有不同信号质量的多个并行虚拟链路,在此基础上,我们结合两阶段排队结构以及最近开发的载波侦听技术,开发出吞吐量最优的调度方案。此外,我们引入了一种新颖的三向握手方式,以确保所有传输链路均满足其SINR要求。我们通过严格的分析和仿真对提出的方案进行了评估。

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