...
首页> 外文期刊>IEEE/ACM Transactions on Networking >Exploiting Constructive Interference for Scalable Flooding in Wireless Networks
【24h】

Exploiting Constructive Interference for Scalable Flooding in Wireless Networks

机译:在无线网络中利用建设性干扰进行可扩展的洪泛

获取原文
获取原文并翻译 | 示例

摘要

Constructive interference-based flooding (CIBF) is a latency-optimal flooding protocol, which can realize millisecond network flooding latency and submicrosecond time synchronization accuracy, require no network state information, and be adapted to topology changes. However, constructive interference (CI) has a precondition to function, i.e., the maximum temporal displacement $Delta $ of concurrent packet transmissions should be less than a given hardware constrained threshold (e.g., 0.5 $mu$s, for the IEEE 802.15.4 radio). In this paper, we derive the closed-form packet reception ratio (PRR) formula for CIBF and theoretically disclose that CIBF suffers the scalability problem. The packet reception performance of intermediate nodes degrades significantly as the density or the size of the network increases. We analytically show that CIBF has a PRR lower bound (94.5%) in the grid topology. Based on this observation, we propose the spine constructive interference-based flooding (SCIF) protocol for an arbitrary uniformly distributed topology. Extensive simulations show that SCIF floods the entire network much more reliably than the state-of- the-art Glossy protocol does in high-density or large-scale networks. We further explain the root cause of CI with waveform analysis, which is mainly examined in simulations and experiments.
机译:构造性基于干扰的泛洪(CIBF)是一种时延最优泛洪协议,它可以实现毫秒级的网络泛洪时延和亚微秒级的时间同步精度,不需要网络状态信息,并且可以适应拓扑变化。但是,相长干扰(CI)具有起作用的前提,即并发分组传输的最大时间位移$ Delta $应该小于给定的硬件约束阈值(例如,对于IEEE 802.15.4,为0.5μs)无线电)。在本文中,我们推导了CIBF的闭包接收率(PRR)公式,并从理论上揭示了CIBF存在可扩展性问题。随着网络的密度或规模的增加,中间节点的数据包接收性能会大大降低。我们分析表明,CIBF在网格拓扑中具有PRR下限(94.5%)。基于此观察,我们为任意均匀分布的拓扑提出了基于脊柱建设性干扰的泛洪(SCIF)协议。大量的仿真表明,与最先进的Glossy协议在高密度或大规模网络中相比,SCIF淹没整个网络要可靠得多。我们通过波形分析进一步解释了CI的根本原因,主要在仿真和实验中进行了研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号