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Moving centroid based routing protocol for incompletely predictable cyber devices in Cyber-Physical-Social Distributed Systems

机译:基于移动质心的路由协议,用于网络物理,社会,分布式系统中不完全可预测的网络设备

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摘要

Cyber-Physical-Social Distributed Systems (CPS-DS) represent the combination of cyber world, physical world and social world. Cyber devices, such as mobile sensors, with characteristics of self-organization and lack of infrastructure, have great influence on data transmission and aggregation in CPS-DS. Incompletely Predictable Networks (IPNs) are a specific representation of CPS-DS, where cyber devices move in limited ranges around basic positions. In this paper, we proposed a novel protocol named Moving Centroid based Routing Protocol (MCRP). Note here that moving centroid is an adjustable point constructed by a series of positions, which are centroids of a set of discrete particles, recording experienced positions of a node during past time slots. Moving centroid is utilized to improve the performance of the proposed protocol, considering movement trend of individuals in a network. A node generates an adjusted basic position (ABP) message, which contains the centroid of a set of locations composed with node positions at every known time slot. ABP messages are periodically broadcast to update the network topology of basic positions. After obtaining the up-to-date topology of basic positions, data packet sender selects optimal relay node through transmission probability calculated by basic positions. From the simulation results, the proposed protocol performs well with ABP messages being broadcast every 20 s. In particular, compared with AODV and GrD-OTBR, the performance of our protocol has a promotion in terms of packet delivery ratio and delay in networks with high node density.
机译:网络物理社会分布式系统(CPS-DS)代表了网络世界,物理世界和社会世界的结合。具有自组织特性且缺乏基础设施的网络设备(例如移动传感器)对CPS-DS中的数据传输和聚合有很大影响。不完全可预测网络(IPN)是CPS-DS的一种特定表示形式,其中网络设备在基本位置周围有限的范围内移动。在本文中,我们提出了一种新颖的协议,称为基于移动质心的路由协议(MCRP)。在此注意,移动质心是由一系列位置构成的可调点,这些位置是一组离散粒子的质心,记录了过去时隙中节点的经历位置。考虑到网络中个人的移动趋势,移动质心被用来改善所提出协议的性能。节点生成调整后的基本位置(ABP)消息,该消息包含一组位置的质心,该位置的质心由每个已知时隙的节点位置组成。定期广播ABP消息以更新基本位置的网络拓扑。在获得基本位置的最新拓扑之后,数据包发送方通过由基本位置计算出的传输概率来选择最佳中继节点。从仿真结果来看,所提出的协议在每20秒钟广播一次ABP消息时表现良好。特别是,与AODV和GrD-OTBR相比,我们的协议的性能在高节点密度的网络中,在数据包传输率和延迟方面都有提升。

著录项

  • 来源
    《Future generation computer systems》 |2020年第7期|1129-1139|共11页
  • 作者单位

    Jiangsu Engineering Center of Network Monitoring Nanjing University of Information Science & Technology Nanjing 210044 China State Key laboratory of Information Security Institute of Information Engineering Beijing 100093 China;

    Jiangsu Engineering Center of Network Monitoring Nanjing University of Information Science & Technology Nanjing 210044 China;

    School of Software and Electrical Engineering Swinburne University of Technology John Street Hawthorn Victoria 3122 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Moving centroid; Incompletely predictable networks; Cyber-Physical-Social Distributed Systems; Cyber devices; Routing protocol;

    机译:移动质心;无法完全预测的网络;网络物理社会分布式系统;网络设备;路由协议;
  • 入库时间 2022-08-18 05:28:23

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