可变无线链路质量的过渡区域感知广播协议

Chunchao Liang, Sunho Lim, Manki Min, Wei Wang
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引用次数: 4

摘要

随着物联网及其应用的日益普及,各种各样的多尺度传感器和设备无缝融合在无处不在的通信基础设施中,广播运营在可扩展的信息传播中仍然发挥着至关重要的作用,以增强信息的可及性和可用性。单元磁盘信号传播模型已被隐式假设并广泛应用于先前的广播协议中,但在现实中我们需要放宽这一假设。在本文中,我们提出了一个过渡区域感知广播协议,称为TCast,在可变的无线链路质量,由于信号的传播影响和不均匀的辐射方向图从全向天线。TCast是一种无状态协议,由两个主要操作组成:转发搜索和概率重播。发送方既不维护任何邻居信息,也不搜索一组转发器,而是广播一组信标包,后面跟着一个数据包。发送方根据侦听到的重广播报文的数量重复执行广播操作。每个接收器根据接收到的信标包的数量独立地做出自己的重播决策。同时提出了一种网络级的随机退避机制,以避免报文的争用和冲突。通过简单的数学分析,进一步研究了过渡区域及其相应的包接收概率。使用omnet++进行了大量的仿真实验,仿真结果表明TCast具有竞争力和可扩展性,并且可以在接收器的时变数据包接收速率下部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TCast: A transitional region aware broadcast protocol in variable wireless link qualities
As Internet-of-Things (IoT) and its applications are increasingly popular, where diverse multi-scale sensors and devices are seamlessly blended for ubiquitous communication infrastructure, broadcast operation still plays an essential role in scalable information dissemination to enhance information accessibility and availability. A unit-disk signal propagation model has been implicitly assumed and extensively applied to prior broadcast protocols, but we need to relax this assumption in reality. In this paper, we propose a transitional region aware broadcast protocol, called TCast, in variable wireless link qualities due to the signal propagation effects and non-uniform radiation pattern from the omni-directional antenna. The TCast is a stateless protocol and consists of two major operations, forwarder search and probabilistic rebroadcast. A sender neither maintains any neighbor information nor searches for a set of forwarders, but broadcasts a set of Beacon packets followed by a single Data packet. The sender repeatedly conducts the broadcast operations depending on the number of rebroadcasted packets overheard. Each receiver independently makes its own rebroadcast decision based on the number of received Beacon packets. A network-level random backoff mechanism is also proposed to avoid any packet contentions and collisions. The transitional region and its corresponding probability of packet reception are further investigated through a simple mathematical analysis. Extensive simulation experiments are also conducted using the OMNeT++, and simulation results indicate that the TCast shows competitive and scalable performance and is deployable in time-varying packet reception rates at receivers.
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