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Performance Comparison of Cognitive Radio Sensor Networks for Industrial IoT With Different Deployment Patterns

机译:不同部署模式下工业物联网认知无线电传感器网络的性能比较

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摘要

Square lattice (SL), triangle lattice (TL), and hexagon lattice (HL) are widely used regular deployment patterns for industrial Internet of Things (IoT). However, the performance of cognitive-radio-based access with these three deployment patterns has not been explored yet. This paper first designs a transmission scheduling method named cognitive access for regular topology (CART) in cognitive radio sensor networks (CRSNs) with minimal occupation of channels and high transmission efficiency. CART consists of a timeslot-and-channel allocation scheme, a cooperative spectrum-sensing scheme, and a scheme for reporting spectrum-sensing results (SSRs) in SL, TL, and HL. This paper also analyzes CART's cooperative spectrum-sensing performance, reception bandwidth, and transmission delay for different transmission interference range and coverage patterns. Based on numerical analysis and simulation, this paper makes comparison between CART and optimal transmission scheduling method for single channel, and that among these three deployment patterns. Results show the following insights for efficient deployment of CRSN: 1) TL yields the optimal cooperative spectrum-sensing performance among three patterns by data fusion rule of 3-out-of-7; 2) under the same conditions and area for deployment, SL provides the optimal reception bandwidth; 3) SL and TL lead to low transmission delay for critical complete coverage; 4) SL leads to the lowest transmission delay for critical multiple coverage; 5) the false alarm (FA) probability of individual node has little influence on transmission delay, while the probability of primary user's (PU) occurrence has noticeably influence on it; and 6) increasing the ratio of transmission timeslot to spectrum-sensing timeslot may decrease transmission delay
机译:方格(SL),三角形格(TL)和六角格(HL)是工业物联网(IoT)广泛使用的常规部署模式。但是,尚未探索这三种部署模式下基于认知无线电的访问的性能。本文首先设计了一种在认知无线电传感器网络(CRSN)中名为规则拓扑(CART)的认知访问的传输调度方法,该方法具有最小的信道占用和高传输效率。 CART由时隙和信道分配方案,协作式频谱感知方案以及用于报告SL,TL和HL中的频谱感知结果(SSR)的方案组成。本文还分析了CART在不同传输干扰范围和覆盖模式下的协作频谱感应性能,接收带宽和传输延迟。在数值分析和仿真的基础上,对单通道最优传输调度方法和CART与三种部署模式进行了比较。结果表明,对于有效部署CRSN具有以下见解:1)TL通过7分之3的数据融合规则在三种模式中产生了最佳的协作频谱感知性能; 2)在相同的部署条件和部署范围内,SL提供了最佳的接收带宽; 3)SL和TL导致较低的传输延迟,可实现关键的完整覆盖; 4)对于关键的多重覆盖,SL导致最低的传输延迟; 5)单个节点的误报(FA)概率对传输延迟的影响很小,而主要用户(PU)发生的概率对其影响显着;和6)增加传输时隙与频谱感测时隙的比率可以减少传输延迟

著录项

  • 来源
    《IEEE systems journal》 |2017年第3期|1456-1466|共11页
  • 作者单位

    School of Information Science and Engineering, Wuhan University of Science and Technology, Wuhan, China;

    Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada;

    Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada;

    Department of Computer Science, St. Francis Xavier University, Antigonish, NS, Canada;

    School of Information Science and Engineering, Wuhan University of Science and Technology, Wuhan, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Topology; Interference; Delays; Monitoring; Lattices; Resource management; Bandwidth;

    机译:拓扑;干扰;延迟;监控;格点;资源管理;带宽;

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